<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Publications | MANIFOLD Lab</title><link>https://manifold.cs.ucl.ac.uk/publication/</link><atom:link href="https://manifold.cs.ucl.ac.uk/publication/index.xml" rel="self" type="application/rss+xml"/><description>Publications</description><generator>Hugo Blox Builder (https://hugoblox.com)</generator><language>en-us</language><image><url>https://manifold.cs.ucl.ac.uk/media/icon_hu11734318148517933569.png</url><title>Publications</title><link>https://manifold.cs.ucl.ac.uk/publication/</link></image><item><title>Investigating the Utility of Explainable Artificial Intelligence for Neuroimaging-Based Dementia Diagnosis and Prognosis</title><link>https://manifold.cs.ucl.ac.uk/publication/martin-hbm-2026/</link><pubDate>Mon, 02 Feb 2026 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/martin-hbm-2026/</guid><description>&lt;!--
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&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1212/wnl.0000000000210221" target="_blank" rel="noopener">https://doi.org/10.1212/wnl.0000000000210221&lt;/a>&lt;/p></description></item><item><title>Brain Age Gap Reduction Following Physical Exercise Mirrors Negative Symptom Improvement in Schizophrenia Spectrum Disorders</title><link>https://manifold.cs.ucl.ac.uk/publication/brain-age-gap-reduction-following-physical-exercise-mirrors-negative-symptom-improvement-in-schizophrenia-spectrum-disorders/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/brain-age-gap-reduction-following-physical-exercise-mirrors-negative-symptom-improvement-in-schizophrenia-spectrum-disorders/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Deniz Yilmaz, Sergi Papiol, Daniel Keeser, James H Cole, Berend Malchow, Andrea Schmitt, Peter Falkai, Isabel Maurus, Lukas Roell&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2025.01.08.24319554" target="_blank" rel="noopener">https://doi.org/10.1101/2025.01.08.24319554&lt;/a>&lt;/p></description></item><item><title>Brain-age in ultra-low-field MRI: how well does it work?</title><link>https://manifold.cs.ucl.ac.uk/publication/brain-age-in-ultra-low-field-mri-how-well-does-it-work/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/brain-age-in-ultra-low-field-mri-how-well-does-it-work/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Francesca Biondo, Carly Bennallick, Sophie A. Martin, Lemuel Puglisi, Thomas C. Booth, David A. Wood, Juan Eugenio Iglesias, František Váša, James H Cole&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2025.10.19.25338298" target="_blank" rel="noopener">https://doi.org/10.1101/2025.10.19.25338298&lt;/a>&lt;/p></description></item><item><title>Does restrictive anorexia nervosa impact brain aging? A machine learning approach to estimate age based on brain structure</title><link>https://manifold.cs.ucl.ac.uk/publication/does-restrictive-anorexia-nervosa-impact-brain-aging-a-machine-learning-approach-to-estimate-age-based-on-brain-structure/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/does-restrictive-anorexia-nervosa-impact-brain-aging-a-machine-learning-approach-to-estimate-age-based-on-brain-structure/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Yubraj Gupta, Feliberto de la Cruz, Katrin Rieger, Monica di Giuliano, Christian Gaser, admin, Lauren Breithaupt, Laura M. Holsen, Kamryn T. Eddy, Jennifer J. Thomas, Suheyla Cetin-Karayumak, Marek Kubicki, Elizabeth A. Lawson, Karen K. Miller, Madhusmita Misra, Andy Schumann, Karl-Jürgen Bär&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.compbiomed.2025.110484" target="_blank" rel="noopener">https://doi.org/10.1016/j.compbiomed.2025.110484&lt;/a>&lt;/p></description></item><item><title>Estimating white matter hyperintensities volume in individuals with stroke using T1-weighted images</title><link>https://manifold.cs.ucl.ac.uk/publication/estimating-white-matter-hyperintensities-volume-in-individuals-with-stroke-using-t1-weighted-images/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/estimating-white-matter-hyperintensities-volume-in-individuals-with-stroke-using-t1-weighted-images/</guid><description/></item><item><title>Explainable artificial intelligence for neuroimaging-based dementia diagnosis and prognosis</title><link>https://manifold.cs.ucl.ac.uk/publication/explainable-artificial-intelligence-for-neuroimaging-based-dementia-diagnosis-and-prognosis/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/explainable-artificial-intelligence-for-neuroimaging-based-dementia-diagnosis-and-prognosis/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Sophie A. Martin, An Zhao, Jiongqi Qu, Phoebe Imms, Andrei Irimia, Frederik Barkhof, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2025.01.13.25320382" target="_blank" rel="noopener">https://doi.org/10.1101/2025.01.13.25320382&lt;/a>&lt;/p></description></item><item><title>Latent Representations of Early Brain Development: A Multivariate Normative Model of Brain Structure and Behaviour</title><link>https://manifold.cs.ucl.ac.uk/publication/latent-representations-of-early-brain-development-a-multivariate-normative-model-of-brain-structure-and-behaviour/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/latent-representations-of-early-brain-development-a-multivariate-normative-model-of-brain-structure-and-behaviour/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Mariam Zabihi, Francesca Biondo, Jonathan O’Muircheartaigh, Thomas Wolfers, Sean Deoni, Andre Marquand, Muriel M.K. Bruchhage, James H. Cole&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2025.08.14.668769" target="_blank" rel="noopener">https://doi.org/10.1101/2025.08.14.668769&lt;/a>&lt;/p></description></item><item><title>Quantitative susceptibility mapping reveals differences between subtypes of Lewy body dementia</title><link>https://manifold.cs.ucl.ac.uk/publication/quantitative-susceptibility-mapping-reveals-differences-between-subtypes-of-lewy-body-dementia/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/quantitative-susceptibility-mapping-reveals-differences-between-subtypes-of-lewy-body-dementia/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Rohan Bhome, George E C Thomas, Naomi Hannaway, Ivelina Dobreva, Angeliki Zarkali, Karin Shmueli, James H Cole, Rimona S Weil&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/brain/awaf325" target="_blank" rel="noopener">https://doi.org/10.1093/brain/awaf325&lt;/a>&lt;/p></description></item><item><title>Regional brain aging patterns reveal disease-specific pathways of neurodegeneration</title><link>https://manifold.cs.ucl.ac.uk/publication/regional-brain-aging-patterns-reveal-disease-specific-pathways-of-neurodegeneration/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/regional-brain-aging-patterns-reveal-disease-specific-pathways-of-neurodegeneration/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Pál Vakli, Béla Weiss, Attila Keresztes, Petra Hermann, admin, Zoltán Vidnyánszky&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2025.11.12.25339989" target="_blank" rel="noopener">https://doi.org/10.1101/2025.11.12.25339989&lt;/a>&lt;/p></description></item><item><title>Repeatability and reproducibility of brain age estimates in multiple sclerosis for three publicly available models</title><link>https://manifold.cs.ucl.ac.uk/publication/repeatability-and-reproducibility-of-brain-age-estimates-in-multiple-sclerosis-for-three-publicly-available-models/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/repeatability-and-reproducibility-of-brain-age-estimates-in-multiple-sclerosis-for-three-publicly-available-models/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Lonneke Bos, David R. van Nederpelt, admin, E.M.M. Strijbis, B. Moraal, J.P.A. Kuijer, B.M.J. Uitdehaag, F. Barkhof, A.M. Wink, H. Vrenken, B. Jasperse&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.ynirp.2025.100252" target="_blank" rel="noopener">https://doi.org/10.1016/j.ynirp.2025.100252&lt;/a>&lt;/p></description></item><item><title>SLaM Image Bank – a real-world diverse London cohort linking brain MRI to electronic mental health and dementia records for the development of clinical decision support tools using artificial intelligence</title><link>https://manifold.cs.ucl.ac.uk/publication/slam-image-bank-a-real-world-diverse-london-cohort-linking-brain-mri-to-electronic-mental-health-and-dementia-records-for-the-development-of-clinical-decision-support-tools-using-artificial-intelligence/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/slam-image-bank-a-real-world-diverse-london-cohort-linking-brain-mri-to-electronic-mental-health-and-dementia-records-for-the-development-of-clinical-decision-support-tools-using-artificial-intelligence/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Ashwin V. Venkataraman, Paul Wright, Amelia Jewell, Christopher Webb, Yini Zhang, Soha K. Patil, M. Jorge Cardoso, admin, Matthew J. Kempton, Charles R. Marshall, Mitul A. Mehta, Christoph Mueller, Timothy R. Nicholson, Thomas A. Pollak, Timothy Rittman, Zeynep Sahin, Ana B. Solana, Daniel R. Stahl, František Váša, Allan H Young, Steve Williams, Robert Stewart, Dag Aarsland&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2025.01.07.25319950" target="_blank" rel="noopener">https://doi.org/10.1101/2025.01.07.25319950&lt;/a>&lt;/p></description></item><item><title>Structural similarity networks reveal brain vulnerability in dementia</title><link>https://manifold.cs.ucl.ac.uk/publication/structural-similarity-networks-reveal-brain-vulnerability-in-dementia/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/structural-similarity-networks-reveal-brain-vulnerability-in-dementia/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Marcella Montagnese, Amir Ebneabbasi, Natalia García‐San‐Martín, Clara Pecci‐Terroba, Rafael Romero‐García, Sarah E. Morgan, admin, Jakob Seidlitz, Timothy Rittman, Richard A. I. Bethlehem&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/alz.70973" target="_blank" rel="noopener">https://doi.org/10.1002/alz.70973&lt;/a>&lt;/p></description></item><item><title>Towards precision MRI biomarkers in epilepsy with normative modelling</title><link>https://manifold.cs.ucl.ac.uk/publication/towards-precision-mri-biomarkers-in-epilepsy-with-normative-modelling/</link><pubDate>Wed, 01 Jan 2025 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/towards-precision-mri-biomarkers-in-epilepsy-with-normative-modelling/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Remika Mito, James H Cole, Sila Genc, Graeme D Jackson, Andrew Zalesky&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/brain/awaf090" target="_blank" rel="noopener">https://doi.org/10.1093/brain/awaf090&lt;/a>&lt;/p></description></item><item><title>Personalizing progressive changes to brain structure in Alzheimers disease using normative modeling</title><link>https://manifold.cs.ucl.ac.uk/publication/verdi_ad_2024/</link><pubDate>Thu, 05 Sep 2024 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/verdi_ad_2024/</guid><description>&lt;!--
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&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/ana.26952" target="_blank" rel="noopener">https://doi.org/10.1002/ana.26952&lt;/a>&lt;/p></description></item><item><title>Assessing brain involvement in Fabry disease with deep learning and the brain‐age paradigm</title><link>https://manifold.cs.ucl.ac.uk/publication/assessing-brain-involvement-in-fabry-disease-with-deep-learning-and-the-brain-age-paradigm/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/assessing-brain-involvement-in-fabry-disease-with-deep-learning-and-the-brain-age-paradigm/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Alfredo Montella, Mario Tranfa, Alessandra Scaravilli, Frederik Barkhof, Arturo Brunetti, admin, Michela Gravina, Stefano Marrone, Daniele Riccio, Eleonora Riccio, Carlo Sansone, Letizia Spinelli, Maria Petracca, Antonio Pisani, Sirio Cocozza, Giuseppe Pontillo&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/hbm.26599" target="_blank" rel="noopener">https://doi.org/10.1002/hbm.26599&lt;/a>&lt;/p></description></item><item><title>Brain age is longitudinally associated with sensorimotor impairment and mild cognitive impairment in subacute stroke</title><link>https://manifold.cs.ucl.ac.uk/publication/brain-age-is-longitudinally-associated-with-sensorimotor-impairment-and-mild-cognitive-impairment-in-subacute-stroke/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/brain-age-is-longitudinally-associated-with-sensorimotor-impairment-and-mild-cognitive-impairment-in-subacute-stroke/</guid><description/></item><item><title>Exploratory analysis of biological age measures in a remyelination clinical trial</title><link>https://manifold.cs.ucl.ac.uk/publication/exploratory-analysis-of-biological-age-measures-in-a-remyelination-clinical-trial/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/exploratory-analysis-of-biological-age-measures-in-a-remyelination-clinical-trial/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Christopher E McMurran, Ermelinda de Meo, Nick G Cunniffe, J William L Brown, Ferran Prados, Baris Kanber, James H Cole, Alasdair J Coles, Sara Hägg, Declan T Chard&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/braincomms/fcaf032" target="_blank" rel="noopener">https://doi.org/10.1093/braincomms/fcaf032&lt;/a>&lt;/p></description></item><item><title>Greater lesion damage is bidirectionally related with accelerated brain aging after stroke</title><link>https://manifold.cs.ucl.ac.uk/publication/greater-lesion-damage-is-bidirectionally-related-with-accelerated-brain-aging-after-stroke/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/greater-lesion-damage-is-bidirectionally-related-with-accelerated-brain-aging-after-stroke/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Mahir H. Khan, Octavio Marin-Pardo, Stuti Chakraborty, Michael R. Borich, Mayerly Castillo, admin, Steven C. Cramer, Miranda R. Donnelly, Emily E. Fokas, Niko H. Fullmer, Jeanette R. Gumarang, Leticia Hayes, Hosung Kim, Amisha Kumar, Emily A. Marks, Emily R. Rosario, Heidi M. Schambra, Nicolas Schweighofer, Grace C. Song, Myriam Taga, Bethany P. Tavener, Carolee J. Winstein, Sook-Lei Liew&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2024.12.13.24319014" target="_blank" rel="noopener">https://doi.org/10.1101/2024.12.13.24319014&lt;/a>&lt;/p></description></item><item><title>Personalizing progressive changes to brain structure in Alzheimer's disease using normative modeling</title><link>https://manifold.cs.ucl.ac.uk/publication/personalizing-progressive-changes-to-brain-structure-in-alzheimer-s-disease-using-normative-modeling/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/personalizing-progressive-changes-to-brain-structure-in-alzheimer-s-disease-using-normative-modeling/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Serena Verdi, Saige Rutherford, Charlotte Fraza, Duygu Tosun, Andre Altmann, Lars Lau Raket, Jonathan M. Schott, Andre F. Marquand, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/alz.14174" target="_blank" rel="noopener">https://doi.org/10.1002/alz.14174&lt;/a>&lt;/p></description></item><item><title>Volume and distribution of white matter hyperintensities in rheumatoid arthritis and ulcerative colitis patients</title><link>https://manifold.cs.ucl.ac.uk/publication/volume-and-distribution-of-white-matter-hyperintensities-in-rheumatoid-arthritis-and-ulcerative-colitis-patients/</link><pubDate>Mon, 01 Jan 2024 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/volume-and-distribution-of-white-matter-hyperintensities-in-rheumatoid-arthritis-and-ulcerative-colitis-patients/</guid><description/></item><item><title>Brain Matters: Exploring Bias in AI for Neuroimaging Research</title><link>https://manifold.cs.ucl.ac.uk/publication/martin_biondo_cole_taylor-miccai-2023/</link><pubDate>Sun, 01 Oct 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/martin_biondo_cole_taylor-miccai-2023/</guid><description>&lt;!--
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&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2023.08.01.23293480" target="_blank" rel="noopener">https://doi.org/10.1101/2023.08.01.23293480&lt;/a>&lt;/p></description></item><item><title>Accelerated Aging after Traumatic Brain Injury: an ENIGMA Multi-Cohort Mega-Analysis</title><link>https://manifold.cs.ucl.ac.uk/publication/accelerated-aging-after-traumatic-brain-injury-an-enigma-multi-cohort-mega-analysis/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/accelerated-aging-after-traumatic-brain-injury-an-enigma-multi-cohort-mega-analysis/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Emily L Dennis, Samantha Vervoordt, Maheen M Adamson, Houshang Amiri, Erin D Bigler, Karen Caeyenberghs, James H Cole, Kristen Dams-O’Connor, Evelyn M Deutscher, Ekaterina Dobryakova, Helen M Genova, Jordan H Grafman, Asta K Håberg, Torgeir Hollstrøm, Andrei Irimia, Vassilis E Koliatsos, Hannah M Lindsey, Abigail Livny, David K Menon, Tricia L Merkley, Abdalla Z Mohamed, Stefania Mondello, Martin M Monti, Virginia FJ Newcome, Mary R Newsome, Jennie Ponsford, Amanda Rabinowitz, Hanne Smevik, Gershon Spitz, Umesh M Vankatesan, Lars T Westlye, Ross Zafonte, Paul M Thompson, Elisabeth A Wilde, Alexander Olsen, Frank G Hillary&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2023.10.16.562638" target="_blank" rel="noopener">https://doi.org/10.1101/2023.10.16.562638&lt;/a>&lt;/p></description></item><item><title>Association of Brain Age, Lesion Volume, and Functional Outcome in Patients With Stroke</title><link>https://manifold.cs.ucl.ac.uk/publication/association-of-brain-age-lesion-volume-and-functional-outcome-in-patients-with-stroke/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/association-of-brain-age-lesion-volume-and-functional-outcome-in-patients-with-stroke/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Sook-Lei Liew, Nicolas Schweighofer, admin, Artemis Zavaliangos-Petropulu, Bethany P. Tavenner, Laura K.M. Han, Tim Hahn, Lianne Schmaal, Miranda R. Donnelly, Jessica N. Jeong, Zhizhuo Wang, Aisha Abdullah, Jun H. Kim, Alexandre Hutton, Giuseppe Barisano, Michael R. Borich, Lara A. Boyd, Amy Brodtmann, Cathrin M. Buetefisch, Winston D. Byblow, Jessica M. Cassidy, Charalambos C. Charalambous, Valentina Ciullo, Adriana Bastos Conforto, Rosalia Dacosta-Aguayo, Julie A. DiCarlo, Martin Domin, Adrienne N. Dula, Natalia Egorova-Brumley, Wuwei Feng, Fatemeh Geranmayeh, Chris M. Gregory, Colleen A. Hanlon, Kathryn Hayward, Jess A. Holguin, Brenton Hordacre, Neda Jahanshad, Steven A. Kautz, Mohamed Salah Khlif, Hosung Kim, Amy Kuceyeski, David J. Lin, Jingchun Liu, Martin Lotze, Bradley J. MacIntosh, John L. Margetis, Maria Mataro, Feroze B. Mohamed, Emily R. Olafson, Gilsoon Park, Fabrizio Piras, Kate P. Revill, Pamela Roberts, Andrew D. Robertson, Nerses Sanossian, Heidi M. Schambra, Na Jin Seo, Surjo R. Soekadar, Gianfranco Spalletta, Cathy M. Stinear, Myriam Taga, Wai Kwong Tang, Greg T. Thielman, Daniela Vecchio, Nick S. Ward, Lars T. Westlye, Carolee J. Winstein, George F. Wittenberg, Steven L. Wolf, Kristin A. Wong, Chunshui Yu, Steven C. Cramer, Paul M. Thompson&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1212/wnl.0000000000207219" target="_blank" rel="noopener">https://doi.org/10.1212/wnl.0000000000207219&lt;/a>&lt;/p></description></item><item><title>Brain-predicted age difference estimated using DeepBrainNet is significantly associated with pain and function—a multi-institutional and multiscanner study</title><link>https://manifold.cs.ucl.ac.uk/publication/brain-predicted-age-difference-estimated-using-deepbrainnet-is-significantly-associated-with-pain-and-function-a-multi-institutional-and-multiscanner-study/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/brain-predicted-age-difference-estimated-using-deepbrainnet-is-significantly-associated-with-pain-and-function-a-multi-institutional-and-multiscanner-study/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Pedro A. Valdes-Hernandez, Chavier Laffitte Nodarse, Alisa J. Johnson, Soamy Montesino-Goicolea, Vishnu Bashyam, Christos Davatzikos, Julio A. Peraza, admin, Zhiguang Huo, Roger B. Fillingim, Yenisel Cruz-Almeida&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1097/j.pain.0000000000002984" target="_blank" rel="noopener">https://doi.org/10.1097/j.pain.0000000000002984&lt;/a>&lt;/p></description></item><item><title>Comparison of volumetric brain analysis in subjects with rheumatoid arthritis and ulcerative colitis</title><link>https://manifold.cs.ucl.ac.uk/publication/comparison-of-volumetric-brain-analysis-in-subjects-with-rheumatoid-arthritis-and-ulcerative-colitis/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/comparison-of-volumetric-brain-analysis-in-subjects-with-rheumatoid-arthritis-and-ulcerative-colitis/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Jennifer G. Cox, Marius de Groot, Matthew J. Kempton, Steven C. R. Williams, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2023.03.08.23286980" target="_blank" rel="noopener">https://doi.org/10.1101/2023.03.08.23286980&lt;/a>&lt;/p></description></item><item><title>Comprehensive assessment of sleep duration, insomnia, and brain structure within the UK Biobank cohort</title><link>https://manifold.cs.ucl.ac.uk/publication/comprehensive-assessment-of-sleep-duration-insomnia-and-brain-structure-within-the-uk-biobank-cohort/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/comprehensive-assessment-of-sleep-duration-insomnia-and-brain-structure-within-the-uk-biobank-cohort/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Aleks Stolicyn, Laura M Lyall, Donald M Lyall, Nikolaj Kjær Høier, Mark J Adams, Xueyi Shen, James H Cole, Andrew M McIntosh, Heather C Whalley, Daniel J Smith&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/sleep/zsad274" target="_blank" rel="noopener">https://doi.org/10.1093/sleep/zsad274&lt;/a>&lt;/p></description></item><item><title>Factors affecting the labelling accuracy of brain MRI studies relevant for deep learning abnormality detection</title><link>https://manifold.cs.ucl.ac.uk/publication/factors-affecting-the-labelling-accuracy-of-brain-mri-studies-relevant-for-deep-learning-abnormality-detection/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/factors-affecting-the-labelling-accuracy-of-brain-mri-studies-relevant-for-deep-learning-abnormality-detection/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Matthew Benger, David A. Wood, Sina Kafiabadi, Aisha Al Busaidi, Emily Guilhem, Jeremy Lynch, Matthew Townend, Antanas Montvila, Juveria Siddiqui, Naveen Gadapa, Gareth Barker, Sebastian Ourselin, admin, Thomas C. Booth&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.3389/fradi.2023.1251825" target="_blank" rel="noopener">https://doi.org/10.3389/fradi.2023.1251825&lt;/a>&lt;/p></description></item><item><title>General dimensions of human brain morphometry inferred from genome‐wide association data</title><link>https://manifold.cs.ucl.ac.uk/publication/general-dimensions-of-human-brain-morphometry-inferred-from-genome-wide-association-data/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/general-dimensions-of-human-brain-morphometry-inferred-from-genome-wide-association-data/</guid><description/></item><item><title>Interpretable machine learning for dementia: A systematic review</title><link>https://manifold.cs.ucl.ac.uk/publication/interpretable-machine-learning-for-dementia-a-systematic-review/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/interpretable-machine-learning-for-dementia-a-systematic-review/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Sophie A. Martin, Florence J. Townend, Frederik Barkhof, James H. Cole&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/alz.12948" target="_blank" rel="noopener">https://doi.org/10.1002/alz.12948&lt;/a>&lt;/p></description></item><item><title>Personalising Alzheimer’s Disease progression using brain atrophy markers</title><link>https://manifold.cs.ucl.ac.uk/publication/personalising-alzheimer-s-disease-progression-using-brain-atrophy-markers/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/personalising-alzheimer-s-disease-progression-using-brain-atrophy-markers/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Serena Verdi, Saige Rutherford, Charlotte Fraza, Duygu Tosun, Andre Altmann, Lars Lau Raket, Jonathan M. Schott, Andre F. Marquand, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2023.06.15.23291418" target="_blank" rel="noopener">https://doi.org/10.1101/2023.06.15.23291418&lt;/a>&lt;/p></description></item><item><title>Revealing Individual Neuroanatomical Heterogeneity in Alzheimer Disease Using Neuroanatomical Normative Modeling</title><link>https://manifold.cs.ucl.ac.uk/publication/revealing-individual-neuroanatomical-heterogeneity-in-alzheimer-disease-using-neuroanatomical-normative-modeling/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/revealing-individual-neuroanatomical-heterogeneity-in-alzheimer-disease-using-neuroanatomical-normative-modeling/</guid><description/></item><item><title>The value of arterial spin labelling perfusion &lt;scp>MRI&lt;/scp> in brain age prediction</title><link>https://manifold.cs.ucl.ac.uk/publication/the-value-of-arterial-spin-labelling-perfusion-scp-mri-scp-in-brain-age-prediction/</link><pubDate>Sun, 01 Jan 2023 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/the-value-of-arterial-spin-labelling-perfusion-scp-mri-scp-in-brain-age-prediction/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Mathijs B. J. Dijsselhof, Michelle Barboure, Michael Stritt, Wibeke Nordhøy, Alle Meije Wink, Dani Beck, Lars T. Westlye, admin, Frederik Barkhof, Henk J. M. M. Mutsaerts, Jan Petr&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/hbm.26242" target="_blank" rel="noopener">https://doi.org/10.1002/hbm.26242&lt;/a>&lt;/p></description></item><item><title>Brain-age is associated with progression to dementia in memory clinic patients</title><link>https://manifold.cs.ucl.ac.uk/publication/biondo-nic-2022/</link><pubDate>Mon, 01 Aug 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/biondo-nic-2022/</guid><description>&lt;!--
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&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.neuroimage.2022.118871" target="_blank" rel="noopener">https://doi.org/10.1016/j.neuroimage.2022.118871&lt;/a>&lt;/p></description></item><item><title>An uncertainty-aware, shareable, and transparent neural network architecture for brain-age modeling</title><link>https://manifold.cs.ucl.ac.uk/publication/an-uncertainty-aware-shareable-and-transparent-neural-network-architecture-for-brain-age-modeling/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/an-uncertainty-aware-shareable-and-transparent-neural-network-architecture-for-brain-age-modeling/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Tim Hahn, Jan Ernsting, Nils R. Winter, Vincent Holstein, Ramona Leenings, Marie Beisemann, Lukas Fisch, Kelvin Sarink, Daniel Emden, Nils Opel, Ronny Redlich, Jonathan Repple, Dominik Grotegerd, Susanne Meinert, Jochen G. Hirsch, Thoralf Niendorf, Beate Endemann, Fabian Bamberg, Thomas Kröncke, Robin Bülow, Henry Völzke, Oyunbileg von Stackelberg, Ramona Felizitas Sowade, Lale Umutlu, Börge Schmidt, Svenja Caspers, Harald Kugel, Tilo Kircher, Benjamin Risse, Christian Gaser, admin, Udo Dannlowski, Klaus Berger&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1126/sciadv.abg9471" target="_blank" rel="noopener">https://doi.org/10.1126/sciadv.abg9471&lt;/a>&lt;/p></description></item><item><title>Brain ageing in schizophrenia: evidence from 26 international cohorts via the ENIGMA Schizophrenia consortium</title><link>https://manifold.cs.ucl.ac.uk/publication/brain-ageing-in-schizophrenia-evidence-from-26-international-cohorts-via-the-enigma-schizophrenia-consortium/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/brain-ageing-in-schizophrenia-evidence-from-26-international-cohorts-via-the-enigma-schizophrenia-consortium/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Constantinos Constantinides, Laura K. M. Han, Clara Alloza, Linda Antonella Antonucci, Celso Arango, Rosa Ayesa-Arriola, Nerisa Banaj, Alessandro Bertolino, Stefan Borgwardt, Jason Bruggemann, Juan Bustillo, Oleg Bykhovski, Vince Calhoun, Vaughan Carr, Stanley Catts, Young-Chul Chung, Benedicto Crespo-Facorro, Covadonga M. Díaz-Caneja, Gary Donohoe, Stefan Du Plessis, Jesse Edmond, Stefan Ehrlich, Robin Emsley, Lisa T. Eyler, Paola Fuentes-Claramonte, Foivos Georgiadis, Melissa Green, Amalia Guerrero-Pedraza, Minji Ha, Tim Hahn, Frans A. Henskens, Laurena Holleran, Stephanie Homan, Philipp Homan, Neda Jahanshad, Joost Janssen, Ellen Ji, Stefan Kaiser, Vasily Kaleda, Minah Kim, Woo-Sung Kim, Matthias Kirschner, Peter Kochunov, Yoo Bin Kwak, Jun Soo Kwon, Irina Lebedeva, Jingyu Liu, Patricia Mitchie, Stijn Michielse, David Mothersill, Bryan Mowry, Víctor Ortiz-García de la Foz, Christos Pantelis, Giulio Pergola, Fabrizio Piras, Edith Pomarol-Clotet, Adrian Preda, Yann Quidé, Paul E. Rasser, Kelly Rootes-Murdy, Raymond Salvador, Marina Sangiuliano, Salvador Sarró, Ulrich Schall, André Schmidt, Rodney J. Scott, Pierluigi Selvaggi, Kang Sim, Antonin Skoch, Gianfranco Spalletta, Filip Spaniel, Sophia I. Thomopoulos, David Tomecek, Alexander S. Tomyshev, Diana Tordesillas-Gutiérrez, Therese van Amelsvoort, Javier Vázquez-Bourgon, Daniela Vecchio, Aristotle Voineskos, Cynthia S. Weickert, Thomas Weickert, Paul M. Thompson, Lianne Schmaal, Theo G. M. van Erp, Jessica Turner, admin, Rosa Ayesa-Arriola, Stefan Du Plessis, Yoo Bin Kwak, Víctor Ortiz-García de la Foz, Therese van Amelsvoort, Theo G. M. van Erp, Danai Dima, Esther Walton&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1038/s41380-022-01897-w" target="_blank" rel="noopener">https://doi.org/10.1038/s41380-022-01897-w&lt;/a>&lt;/p></description></item><item><title>Brain charts for the human lifespan</title><link>https://manifold.cs.ucl.ac.uk/publication/brain-charts-for-the-human-lifespan/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/brain-charts-for-the-human-lifespan/</guid><description/></item><item><title>Cognitive and behavioural but not motor impairment increases brain age in amyotrophic lateral sclerosis</title><link>https://manifold.cs.ucl.ac.uk/publication/cognitive-and-behavioural-but-not-motor-impairment-increases-brain-age-in-amyotrophic-lateral-sclerosis/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/cognitive-and-behavioural-but-not-motor-impairment-increases-brain-age-in-amyotrophic-lateral-sclerosis/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Andreas Hermann, Gaël Nils Tarakdjian, Anna Gesine Marie Temp, Elisabeth Kasper, Judith Machts, Jörn Kaufmann, Stefan Vielhaber, Johannes Prudlo, James H Cole, Stefan Teipel, Martin Dyrba&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/braincomms/fcac239" target="_blank" rel="noopener">https://doi.org/10.1093/braincomms/fcac239&lt;/a>&lt;/p></description></item><item><title>Cross-Sectional Brain-Predicted Age Differences in Community-Dwelling Middle-Aged and Older Adults with High Impact Knee Pain</title><link>https://manifold.cs.ucl.ac.uk/publication/cross-sectional-brain-predicted-age-differences-in-community-dwelling-middle-aged-and-older-adults-with-high-impact-knee-pain/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/cross-sectional-brain-predicted-age-differences-in-community-dwelling-middle-aged-and-older-adults-with-high-impact-knee-pain/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Alisa J Johnson, Taylor Buchanan, Chavier Laffitte Nodarse, Pedro A Valdes Hernandez, Zhiguang Huo, James H Cole, Thomas W Buford, Roger B Fillingim, Yenisel Cruz-Almeida&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.2147/jpr.s384229" target="_blank" rel="noopener">https://doi.org/10.2147/jpr.s384229&lt;/a>&lt;/p></description></item><item><title>Deep learning models for triaging hospital head MRI examinations</title><link>https://manifold.cs.ucl.ac.uk/publication/deep-learning-models-for-triaging-hospital-head-mri-examinations/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/deep-learning-models-for-triaging-hospital-head-mri-examinations/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> David A. Wood, Sina Kafiabadi, Ayisha Al Busaidi, Emily Guilhem, Antanas Montvila, Jeremy Lynch, Matthew Townend, Siddharth Agarwal, Asif Mazumder, Gareth J. Barker, Sebastien Ourselin, James H. Cole, Thomas C. Booth&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.media.2022.102391" target="_blank" rel="noopener">https://doi.org/10.1016/j.media.2022.102391&lt;/a>&lt;/p></description></item><item><title>Global brain health modulates the impact of lesion damage on post-stroke sensorimotor outcomes</title><link>https://manifold.cs.ucl.ac.uk/publication/global-brain-health-modulates-the-impact-of-lesion-damage-on-post-stroke-sensorimotor-outcomes/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/global-brain-health-modulates-the-impact-of-lesion-damage-on-post-stroke-sensorimotor-outcomes/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Sook-Lei Liew, Nicolas Schweighofer, admin, Artemis Zavaliangos-Petropulu, Bethany P. Lo, Laura K.M. Han, Tim Hahn, Lianne Schmaal, Miranda R. Donnelly, Jessica N. Jeong, Zhizhuo Wang, Aisha Abdullah, Jun H. Kim, Alexandre Hutton, Giuseppe Barisano, Michael R. Borich, Lara A. Boyd, Amy Brodtmann, Cathrin M. Buetefisch, Winston D. Byblow, Jessica M. Cassidy, Charalambos C. Charalambous, Valentina Ciullo, Adriana B. Conforto, Rosalia Dacosta-Aguayo, Julie A. DiCarlo, Martin Domin, Adrienne N. Dula, Natalia Egorova-Brumley, Wuwei Feng, Fatemeh Geranmayeh, Chris M. Gregory, Colleen A. Hanlon, Jess A. Holguin, Brenton Hordacre, Neda Jahanshad, Steven A. Kautz, Mohamed Salah Khlif, Hosung Kim, Amy Kuceyeski, David J. Lin, Jingchun Liu, Martin Lotze, Bradley J. MacIntosh, John L. Margetis, Maria Mataro, Feroze B. Mohamed, Emily R. Olafson, Gilsoon Park, Fabrizio Piras, Kate P. Revill, Pamela Roberts, Andrew D. Robertson, Nerses Sanossian, Heidi M. Schambra, Na Jin Seo, Surjo R. Soekadar, Gianfranco Spalletta, Cathy M. Stinear, Myriam Taga, Wai Kwong Tang, Greg T. Thielman, Daniela Vecchio, Nick S. Ward, Lars T. Westlye, Carolee J. Winstein, George F. Wittenberg, Steven L. Wolf, Kristin A. Wong, Chunshui Yu, Steven C. Cramer, Paul M. Thompson&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2022.04.27.489791" target="_blank" rel="noopener">https://doi.org/10.1101/2022.04.27.489791&lt;/a>&lt;/p></description></item><item><title>Publisher Correction: Brain charts for the human lifespan</title><link>https://manifold.cs.ucl.ac.uk/publication/publisher-correction-brain-charts-for-the-human-lifespan/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/publisher-correction-brain-charts-for-the-human-lifespan/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> R. A. I. Bethlehem, J. Seidlitz, S. R. White, J. W. Vogel, K. M. Anderson, C. Adamson, S. Adler, G. S. Alexopoulos, E. Anagnostou, A. Areces-Gonzalez, D. E. Astle, B. Auyeung, M. Ayub, J. Bae, G. Ball, S. Baron-Cohen, R. Beare, S. A. Bedford, V. Benegal, F. Beyer, J. Blangero, M. Blesa Cábez, J. P. Boardman, M. Borzage, J. F. Bosch-Bayard, N. Bourke, V. D. Calhoun, M. M. Chakravarty, C. Chen, C. Chertavian, G. Chetelat, Y. S. Chong, J. H. Cole, A. Corvin, M. Costantino, E. Courchesne, F. Crivello, V. L. Cropley, J. Crosbie, N. Crossley, M. Delarue, R. Delorme, S. Desrivieres, G. A. Devenyi, M. A. Di Biase, R. Dolan, K. A. Donald, G. Donohoe, K. Dunlop, A. D. Edwards, J. T. Elison, C. T. Ellis, J. A. Elman, L. Eyler, D. A. Fair, E. Feczko, P. C. Fletcher, P. Fonagy, C. E. Franz, L. Galan-Garcia, A. Gholipour, J. Giedd, J. H. Gilmore, D. C. Glahn, I. M. Goodyer, P. E. Grant, N. A. Groenewold, F. M. Gunning, R. E. Gur, R. C. Gur, C. F. Hammill, O. Hansson, T. Hedden, A. Heinz, R. N. Henson, K. Heuer, J. Hoare, B. Holla, A. J. Holmes, R. Holt, H. Huang, K. Im, J. Ipser, C. R. Jack, A. P. Jackowski, T. Jia, K. A. Johnson, P. B. Jones, D. T. Jones, R. S. Kahn, H. Karlsson, L. Karlsson, R. Kawashima, E. A. Kelley, S. Kern, K. W. Kim, M. G. Kitzbichler, W. S. Kremen, F. Lalonde, B. Landeau, S. Lee, J. Lerch, J. D. Lewis, J. Li, W. Liao, C. Liston, M. V. Lombardo, J. Lv, C. Lynch, T. T. Mallard, M. Marcelis, R. D. Markello, S. R. Mathias, B. Mazoyer, P. McGuire, M. J. Meaney, A. Mechelli, N. Medic, B. Misic, S. E. Morgan, D. Mothersill, J. Nigg, M. Q. W. Ong, C. Ortinau, R. Ossenkoppele, M. Ouyang, L. Palaniyappan, L. Paly, P. M. Pan, C. Pantelis, M. M. Park, T. Paus, Z. Pausova, D. Paz-Linares, A. Pichet Binette, K. Pierce, X. Qian, J. Qiu, A. Qiu, A. Raznahan, T. Rittman, A. Rodrigue, C. K. Rollins, R. Romero-Garcia, L. Ronan, M. D. Rosenberg, D. H. Rowitch, G. A. Salum, T. D. Satterthwaite, H. L. Schaare, R. J. Schachar, A. P. Schultz, G. Schumann, M. Schöll, D. Sharp, R. T. Shinohara, I. Skoog, C. D. Smyser, R. A. Sperling, D. J. Stein, A. Stolicyn, J. Suckling, G. Sullivan, Y. Taki, B. Thyreau, R. Toro, N. Traut, K. A. Tsvetanov, N. B. Turk-Browne, J. J. Tuulari, C. Tzourio, É. Vachon-Presseau, M. J. Valdes-Sosa, P. A. Valdes-Sosa, S. L. Valk, T. van Amelsvoort, S. N. Vandekar, L. Vasung, L. W. Victoria, S. Villeneuve, A. Villringer, P. E. Vértes, K. Wagstyl, Y. S. Wang, S. K. Warfield, V. Warrier, E. Westman, M. L. Westwater, H. C. Whalley, A. V. Witte, N. Yang, B. Yeo, H. Yun, A. Zalesky, H. J. Zar, A. Zettergren, J. H. Zhou, H. Ziauddeen, A. Zugman, X. N. Zuo, C. Rowe, G. B. Frisoni, A. Pichet Binette, E. T. Bullmore, A. F. Alexander-Bloch&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1038/s41586-022-05300-0" target="_blank" rel="noopener">https://doi.org/10.1038/s41586-022-05300-0&lt;/a>&lt;/p></description></item><item><title>Revealing Individual Neuroanatomical Heterogeneity in Alzheimer’s Disease</title><link>https://manifold.cs.ucl.ac.uk/publication/revealing-individual-neuroanatomical-heterogeneity-in-alzheimer-s-disease/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/revealing-individual-neuroanatomical-heterogeneity-in-alzheimer-s-disease/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Serena Verdi, Seyed Mostafa Kia, Keir Yong, Duygu Tosun, Jonathan M. Schott, Andre F. Marquand, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2022.06.30.22277053" target="_blank" rel="noopener">https://doi.org/10.1101/2022.06.30.22277053&lt;/a>&lt;/p></description></item><item><title>Sex differences in predictors and regional patterns of brain age gap estimates</title><link>https://manifold.cs.ucl.ac.uk/publication/sex-differences-in-predictors-and-regional-patterns-of-brain-age-gap-estimates/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/sex-differences-in-predictors-and-regional-patterns-of-brain-age-gap-estimates/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Nicole Sanford, Ruiyang Ge, Mathilde Antoniades, Amirhossein Modabbernia, Shalaila S. Haas, Heather C. Whalley, Liisa Galea, Sebastian G. Popescu, admin, Sophia Frangou&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/hbm.25983" target="_blank" rel="noopener">https://doi.org/10.1002/hbm.25983&lt;/a>&lt;/p></description></item><item><title>Tissue volume estimation and age prediction using rapid structural brain scans</title><link>https://manifold.cs.ucl.ac.uk/publication/tissue-volume-estimation-and-age-prediction-using-rapid-structural-brain-scans/</link><pubDate>Sat, 01 Jan 2022 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/tissue-volume-estimation-and-age-prediction-using-rapid-structural-brain-scans/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Harriet Hobday, admin, Ryan A. Stanyard, Richard E. Daws, Vincent Giampietro, Owen O’Daly, Robert Leech, František Váša&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2022.01.19.476615" target="_blank" rel="noopener">https://doi.org/10.1101/2022.01.19.476615&lt;/a>&lt;/p></description></item><item><title>Beyond the average patient: how neuroimaging models can address heterogeneity in dementia</title><link>https://manifold.cs.ucl.ac.uk/publication/verdi-brain-2021/</link><pubDate>Fri, 01 Oct 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/verdi-brain-2021/</guid><description>&lt;!--
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&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/brain/awab165" target="_blank" rel="noopener">https://doi.org/10.1093/brain/awab165&lt;/a>&lt;/p></description></item><item><title>Brain-age predicts subsequent dementia in memory clinic patients</title><link>https://manifold.cs.ucl.ac.uk/publication/brain-age-predicts-subsequent-dementia-in-memory-clinic-patients/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/brain-age-predicts-subsequent-dementia-in-memory-clinic-patients/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Francesca Biondo, Amelia Jewell, Megan Pritchard, Dag Aarsland, Claire J. Steves, Christoph Mueller, James H Cole&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2021.04.03.21254781" target="_blank" rel="noopener">https://doi.org/10.1101/2021.04.03.21254781&lt;/a>&lt;/p></description></item><item><title>Deep learning to automate the labelling of head MRI datasets for computer vision applications</title><link>https://manifold.cs.ucl.ac.uk/publication/deep-learning-to-automate-the-labelling-of-head-mri-datasets-for-computer-vision-applications/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/deep-learning-to-automate-the-labelling-of-head-mri-datasets-for-computer-vision-applications/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> David A. Wood, Sina Kafiabadi, Aisha Al Busaidi, Emily L. Guilhem, Jeremy Lynch, Matthew K. Townend, Antanas Montvila, Martin Kiik, Juveria Siddiqui, Naveen Gadapa, Matthew D. Benger, Asif Mazumder, Gareth Barker, Sebastian Ourselin, admin, Thomas C. Booth&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1007/s00330-021-08132-0" target="_blank" rel="noopener">https://doi.org/10.1007/s00330-021-08132-0&lt;/a>&lt;/p></description></item><item><title>Development and Validation of a Novel Dementia Risk Score in the UK Biobank Cohort</title><link>https://manifold.cs.ucl.ac.uk/publication/development-and-validation-of-a-novel-dementia-risk-score-in-the-uk-biobank-cohort/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/development-and-validation-of-a-novel-dementia-risk-score-in-the-uk-biobank-cohort/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Melis Anaturk, Raihaan Patel, Georgios Georgiopoulos, Danielle Newby, Anya Topiwala, Ann-Marie G. de Lange, James Howard Cole, Michelle G. Jansen, Klaus P. Ebmeier, Archana Singh-Manoux, Mika Kivimäki, Sana Suri&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.31234/osf.io/5yvjr" target="_blank" rel="noopener">https://doi.org/10.31234/osf.io/5yvjr&lt;/a>&lt;/p></description></item><item><title>Distributional Gaussian Process Layers for Outlier Detection in Image Segmentation</title><link>https://manifold.cs.ucl.ac.uk/publication/distributional-gaussian-process-layers-for-outlier-detection-in-image-segmentation/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/distributional-gaussian-process-layers-for-outlier-detection-in-image-segmentation/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Sebastian G. Popescu, David J. Sharp, admin, Konstantinos Kamnitsas, Ben Glocker&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1007/978-3-030-78191-0_32" target="_blank" rel="noopener">https://doi.org/10.1007/978-3-030-78191-0_32&lt;/a>&lt;/p></description></item><item><title>Editorial: Predicting Chronological Age From Structural Neuroimaging: The Predictive Analytics Competition 2019</title><link>https://manifold.cs.ucl.ac.uk/publication/editorial-predicting-chronological-age-from-structural-neuroimaging-the-predictive-analytics-competition-2019/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/editorial-predicting-chronological-age-from-structural-neuroimaging-the-predictive-analytics-competition-2019/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Lukas Fisch, Ramona Leenings, Nils R. Winter, Udo Dannlowski, Christian Gaser, admin, Tim Hahn&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.3389/fpsyt.2021.710932" target="_blank" rel="noopener">https://doi.org/10.3389/fpsyt.2021.710932&lt;/a>&lt;/p></description></item><item><title>Local brain-age: A U-Net model</title><link>https://manifold.cs.ucl.ac.uk/publication/local-brain-age-a-u-net-model/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/local-brain-age-a-u-net-model/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Sebastian G. Popescu, Ben Glocker, David J. Sharp, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2021.01.26.428243" target="_blank" rel="noopener">https://doi.org/10.1101/2021.01.26.428243&lt;/a>&lt;/p></description></item><item><title>Mind the gap: performance metric evaluation in brain-age prediction</title><link>https://manifold.cs.ucl.ac.uk/publication/mind-the-gap-performance-metric-evaluation-in-brain-age-prediction/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/mind-the-gap-performance-metric-evaluation-in-brain-age-prediction/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Ann-Marie G. de Lange, Melis Anatürk, Jaroslav Rokicki, Laura K.M. Han, Katja Franke, Dag Alnæs, Klaus P. Ebmeier, Bogdan Draganski, Tobias Kaufmann, Lars T. Westlye, Tim Hahn, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2021.05.16.444349" target="_blank" rel="noopener">https://doi.org/10.1101/2021.05.16.444349&lt;/a>&lt;/p></description></item><item><title>Network Modeling Sex Differences in Brain Integrity and Metabolic Health</title><link>https://manifold.cs.ucl.ac.uk/publication/network-modeling-sex-differences-in-brain-integrity-and-metabolic-health/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/network-modeling-sex-differences-in-brain-integrity-and-metabolic-health/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Janelle T. Foret, Maria Dekhtyar, admin, Drew D. Gourley, Marie Caillaud, Hirofumi Tanaka, Andreana P. Haley&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.3389/fnagi.2021.691691" target="_blank" rel="noopener">https://doi.org/10.3389/fnagi.2021.691691&lt;/a>&lt;/p></description></item><item><title>Rapid processing and quantitative evaluation of multicontrast EPImix scans for adaptive multimodal imaging</title><link>https://manifold.cs.ucl.ac.uk/publication/rapid-processing-and-quantitative-evaluation-of-multicontrast-epimix-scans-for-adaptive-multimodal-imaging/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/rapid-processing-and-quantitative-evaluation-of-multicontrast-epimix-scans-for-adaptive-multimodal-imaging/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> František Váša, Harriet Hobday, Ryan A. Stanyard, Richard E. Daws, Vincent Giampietro, Owen O’Daly, David J. Lythgoe, Jakob Seidlitz, Stefan Skare, Steven C. R. Williams, Andre F. Marquand, Robert Leech, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2021.02.12.430956" target="_blank" rel="noopener">https://doi.org/10.1101/2021.02.12.430956&lt;/a>&lt;/p></description></item><item><title>Rapid processing and quantitative evaluation of structural brain scans for adaptive multimodal imaging</title><link>https://manifold.cs.ucl.ac.uk/publication/rapid-processing-and-quantitative-evaluation-of-structural-brain-scans-for-adaptive-multimodal-imaging/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/rapid-processing-and-quantitative-evaluation-of-structural-brain-scans-for-adaptive-multimodal-imaging/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> František Váša, Harriet Hobday, Ryan A. Stanyard, Richard E. Daws, Vincent Giampietro, Owen O&amp;rsquo;Daly, David J. Lythgoe, Jakob Seidlitz, Stefan Skare, Steven C. R. Williams, Andre F. Marquand, Robert Leech, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/hbm.25755" target="_blank" rel="noopener">https://doi.org/10.1002/hbm.25755&lt;/a>&lt;/p></description></item><item><title>Thalamic white matter macrostructure and subnuclei volumes in Parkinson’s disease depression</title><link>https://manifold.cs.ucl.ac.uk/publication/thalamic-white-matter-macrostructure-and-subnuclei-volumes-in-parkinson-s-disease-depression/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/thalamic-white-matter-macrostructure-and-subnuclei-volumes-in-parkinson-s-disease-depression/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> R Bhome, A Zarkali, JH Cole, RS Weil&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/2021.05.07.21256793" target="_blank" rel="noopener">https://doi.org/10.1101/2021.05.07.21256793&lt;/a>&lt;/p></description></item><item><title>Traumatic brain injury: a comparison of diffusion and volumetric magnetic resonance imaging measures</title><link>https://manifold.cs.ucl.ac.uk/publication/traumatic-brain-injury-a-comparison-of-diffusion-and-volumetric-magnetic-resonance-imaging-measures/</link><pubDate>Fri, 01 Jan 2021 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/traumatic-brain-injury-a-comparison-of-diffusion-and-volumetric-magnetic-resonance-imaging-measures/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Niall J Bourke, Maria Yanez Lopez, Peter O Jenkins, Sara De Simoni, James H Cole, Pete Lally, Emma-Jane Mallas, Hui Zhang, David J Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/braincomms/fcab006" target="_blank" rel="noopener">https://doi.org/10.1093/braincomms/fcab006&lt;/a>&lt;/p></description></item><item><title>Accurate brain‐age models for routine clinical MRI examinations</title><link>https://manifold.cs.ucl.ac.uk/publication/wood-neuroimage-2022/</link><pubDate>Sat, 01 Feb 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/wood-neuroimage-2022/</guid><description>&lt;!--
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Supplementary notes can be added here, including [code and math](https://sourcethemes.com/academic/docs/writing-markdown-latex/). --></description></item><item><title>An automated machine learning approach to predict brain age from cortical anatomical measures</title><link>https://manifold.cs.ucl.ac.uk/publication/an-automated-machine-learning-approach-to-predict-brain-age-from-cortical-anatomical-measures/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/an-automated-machine-learning-approach-to-predict-brain-age-from-cortical-anatomical-measures/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Jessica Dafflon, Walter H. L. Pinaya, Federico Turkheimer, admin, Robert Leech, Mathew A. Harris, Simon R. Cox, Heather C. Whalley, Andrew M. McIntosh, Peter J. Hellyer&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/hbm.25028" target="_blank" rel="noopener">https://doi.org/10.1002/hbm.25028&lt;/a>&lt;/p></description></item><item><title>Associations between alcohol use and accelerated biological ageing</title><link>https://manifold.cs.ucl.ac.uk/publication/associations-between-alcohol-use-and-accelerated-biological-ageing/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/associations-between-alcohol-use-and-accelerated-biological-ageing/</guid><description/></item><item><title>Attitudes to ageing, biomarkers of ageing and mortality: the Lothian Birth Cohort 1936</title><link>https://manifold.cs.ucl.ac.uk/publication/attitudes-to-ageing-biomarkers-of-ageing-and-mortality-the-lothian-birth-cohort-1936/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/attitudes-to-ageing-biomarkers-of-ageing-and-mortality-the-lothian-birth-cohort-1936/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Kyle J J McLachlan, James H Cole, Sarah E Harris, Riccardo E Marioni, Ian J Deary, Catharine R Gale&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1136/jech-2019-213462" target="_blank" rel="noopener">https://doi.org/10.1136/jech-2019-213462&lt;/a>&lt;/p></description></item><item><title>Brain aging in major depressive disorder: results from the ENIGMA major depressive disorder working group</title><link>https://manifold.cs.ucl.ac.uk/publication/brain-aging-in-major-depressive-disorder-results-from-the-enigma-major-depressive-disorder-working-group/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/brain-aging-in-major-depressive-disorder-results-from-the-enigma-major-depressive-disorder-working-group/</guid><description/></item><item><title>Cannabis use in patients with early psychosis is associated with alterations in putamen and thalamic shape</title><link>https://manifold.cs.ucl.ac.uk/publication/cannabis-use-in-patients-with-early-psychosis-is-associated-with-alterations-in-putamen-and-thalamic-shape/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/cannabis-use-in-patients-with-early-psychosis-is-associated-with-alterations-in-putamen-and-thalamic-shape/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Musa Sami, admin, Matthew J. Kempton, Luciano Annibale, Debasis Das, Marlene Kelbrick, Savitha Eranti, Tracy Collier, Chidimma Onyejiaka, Aisling O&amp;rsquo;Neill, David J. Lythgoe, Philip McGuire, Steve C. R. Williams, Sagnik Bhattacharyya&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/hbm.25131" target="_blank" rel="noopener">https://doi.org/10.1002/hbm.25131&lt;/a>&lt;/p></description></item><item><title>Commentary: Correction procedures in brain-age prediction</title><link>https://manifold.cs.ucl.ac.uk/publication/commentary-correction-procedures-in-brain-age-prediction/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/commentary-correction-procedures-in-brain-age-prediction/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Ann-Marie G. de Lange, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.nicl.2020.102229" target="_blank" rel="noopener">https://doi.org/10.1016/j.nicl.2020.102229&lt;/a>&lt;/p></description></item><item><title>Diffuse axonal injury predicts neurodegeneration after moderate–severe traumatic brain injury</title><link>https://manifold.cs.ucl.ac.uk/publication/diffuse-axonal-injury-predicts-neurodegeneration-after-moderate-severe-traumatic-brain-injury/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/diffuse-axonal-injury-predicts-neurodegeneration-after-moderate-severe-traumatic-brain-injury/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Neil S N Graham, Amy Jolly, Karl Zimmerman, Niall J Bourke, Gregory Scott, James H Cole, Jonathan M Schott, David J Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/brain/awaa316" target="_blank" rel="noopener">https://doi.org/10.1093/brain/awaa316&lt;/a>&lt;/p></description></item><item><title>Distinct dopaminergic abnormalities in traumatic brain injury and Parkinson’s disease</title><link>https://manifold.cs.ucl.ac.uk/publication/distinct-dopaminergic-abnormalities-in-traumatic-brain-injury-and-parkinson-s-disease/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/distinct-dopaminergic-abnormalities-in-traumatic-brain-injury-and-parkinson-s-disease/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Peter Owen Jenkins, Andreas-Antonios Roussakis, Sara De Simoni, Niall Bourke, Jessica Fleminger, admin, Paola Piccini, David Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1136/jnnp-2019-321759" target="_blank" rel="noopener">https://doi.org/10.1136/jnnp-2019-321759&lt;/a>&lt;/p></description></item><item><title>Editorial: Deep Learning in Aging Neuroscience</title><link>https://manifold.cs.ucl.ac.uk/publication/editorial-deep-learning-in-aging-neuroscience/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/editorial-deep-learning-in-aging-neuroscience/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Javier Ramírez, Juan M. Górriz, Andrés Ortiz, admin, Martin Dyrba&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.3389/fninf.2020.573974" target="_blank" rel="noopener">https://doi.org/10.3389/fninf.2020.573974&lt;/a>&lt;/p></description></item><item><title>ENIGMA and global neuroscience: A decade of large-scale studies of the brain in health and disease across more than 40 countries</title><link>https://manifold.cs.ucl.ac.uk/publication/enigma-and-global-neuroscience-a-decade-of-large-scale-studies-of-the-brain-in-health-and-disease-across-more-than-40-countries/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/enigma-and-global-neuroscience-a-decade-of-large-scale-studies-of-the-brain-in-health-and-disease-across-more-than-40-countries/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Paul M. Thompson, Neda Jahanshad, Christopher R. K. Ching, Lauren E. Salminen, Sophia I. Thomopoulos, Joanna Bright, Bernhard T. Baune, Sara Bertolín, Janita Bralten, Willem B. Bruin, Robin Bülow, Jian Chen, Yann Chye, Udo Dannlowski, Carolien G. F. de Kovel, Gary Donohoe, Lisa T. Eyler, Stephen V. Faraone, Pauline Favre, Courtney A. Filippi, Thomas Frodl, Daniel Garijo, Yolanda Gil, Hans J. Grabe, Katrina L. Grasby, Tomas Hajek, Laura K. M. Han, Sean N. Hatton, Kevin Hilbert, Tiffany C. Ho, Laurena Holleran, Georg Homuth, Norbert Hosten, Josselin Houenou, Iliyan Ivanov, Tianye Jia, Sinead Kelly, Marieke Klein, Jun Soo Kwon, Max A. Laansma, Jeanne Leerssen, Ulrike Lueken, Abraham Nunes, Joseph O’ Neill, Nils Opel, Fabrizio Piras, Federica Piras, Merel C. Postema, Elena Pozzi, Natalia Shatokhina, Carles Soriano-Mas, Gianfranco Spalletta, Daqiang Sun, Alexander Teumer, Amanda K. Tilot, Leonardo Tozzi, Celia van der Merwe, Eus J. W. Van Someren, Guido A. van Wingen, Henry Völzke, Esther Walton, Lei Wang, Anderson M. Winkler, Katharina Wittfeld, Margaret J. Wright, Je-Yeon Yun, Guohao Zhang, Yanli Zhang-James, Bhim M. Adhikari, Ingrid Agartz, Moji Aghajani, André Aleman, Robert R. Althoff, Andre Altmann, Ole A. Andreassen, David A. Baron, Brenda L. Bartnik-Olson, Janna Marie Bas-Hoogendam, Arielle R. Baskin-Sommers, Carrie E. Bearden, Laura A. Berner, Premika S. W. Boedhoe, Rachel M. Brouwer, Jan K. Buitelaar, Karen Caeyenberghs, Charlotte A. M. Cecil, Ronald A. Cohen, admin, Patricia J. Conrod, Stephane A. De Brito, Sonja M. C. de Zwarte, Emily L. Dennis, Sylvane Desrivieres, Danai Dima, Stefan Ehrlich, Carrie Esopenko, Graeme Fairchild, Simon E. Fisher, Jean-Paul Fouche, Clyde Francks, Sophia Frangou, Barbara Franke, Hugh P. Garavan, David C. Glahn, Nynke A. Groenewold, Tiril P. Gurholt, Boris A. Gutman, Tim Hahn, Ian H. Harding, Dennis Hernaus, Derrek P. Hibar, Frank G. Hillary, Martine Hoogman, Hilleke E. Hulshoff Pol, Maria Jalbrzikowski, George A. Karkashadze, Eduard T. Klapwijk, Rebecca C. Knickmeyer, Peter Kochunov, Inga K. Koerte, Xiang-Zhen Kong, Sook-Lei Liew, Alexander P. Lin, Mark W. Logue, Eileen Luders, Fabio Macciardi, Scott Mackey, Andrew R. Mayer, Carrie R. McDonald, Agnes B. McMahon, Sarah E. Medland, Gemma Modinos, Rajendra A. Morey, Sven C. Mueller, Pratik Mukherjee, Leyla Namazova-Baranova, Talia M. Nir, Alexander Olsen, Peristera Paschou, Daniel S. Pine, Fabrizio Pizzagalli, Miguel E. Rentería, Jonathan D. Rohrer, Philipp G. Sämann, Lianne Schmaal, Gunter Schumann, Mark S. Shiroishi, Sanjay M. Sisodiya, Dirk J. A. Smit, Ida E. Sønderby, Dan J. Stein, Jason L. Stein, Masoud Tahmasian, David F. Tate, Jessica A. Turner, Odile A. van den Heuvel, Nic J. A. van der Wee, Ysbrand D. van der Werf, Theo G. M. van Erp, Neeltje E. M. van Haren, Daan van Rooij, Laura S. van Velzen, Ilya M. Veer, Dick J. Veltman, Julio E. Villalon-Reina, Henrik Walter, Christopher D. Whelan, Elisabeth A. Wilde, Mojtaba Zarei, Vladimir Zelman&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1038/s41398-020-0705-1" target="_blank" rel="noopener">https://doi.org/10.1038/s41398-020-0705-1&lt;/a>&lt;/p></description></item><item><title>Labelling Imaging Datasets on the Basis of Neuroradiology Reports: A Validation Study</title><link>https://manifold.cs.ucl.ac.uk/publication/labelling-imaging-datasets-on-the-basis-of-neuroradiology-reports-a-validation-study/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/labelling-imaging-datasets-on-the-basis-of-neuroradiology-reports-a-validation-study/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> David A. Wood, Sina Kafiabadi, Aisha Al Busaidi, Emily Guilhem, Jeremy Lynch, Matthew Townend, Antanas Montvila, Juveria Siddiqui, Naveen Gadapa, Matthew Benger, Gareth Barker, Sebastian Ourselin, admin, Thomas C. Booth&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1007/978-3-030-61166-8_27" target="_blank" rel="noopener">https://doi.org/10.1007/978-3-030-61166-8_27&lt;/a>&lt;/p></description></item><item><title>Longitudinal Assessment of Multiple Sclerosis with the Brain‐Age Paradigm</title><link>https://manifold.cs.ucl.ac.uk/publication/longitudinal-assessment-of-multiple-sclerosis-with-the-brain-age-paradigm/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/longitudinal-assessment-of-multiple-sclerosis-with-the-brain-age-paradigm/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin, Joel Raffel, Tim Friede, Arman Eshaghi, Wallace J. Brownlee, Declan Chard, Nicola De Stefano, Christian Enzinger, Lukas Pirpamer, Massimo Filippi, Claudio Gasperini, Maria Assunta Rocca, Alex Rovira, Serena Ruggieri, Jaume Sastre‐Garriga, Maria Laura Stromillo, Bernard M. J. Uitdehaag, Hugo Vrenken, Frederik Barkhof, Richard Nicholas, Olga Ciccarelli&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/ana.25746" target="_blank" rel="noopener">https://doi.org/10.1002/ana.25746&lt;/a>&lt;/p></description></item><item><title>Multimodal brain-age prediction and cardiovascular risk: The Whitehall II MRI sub-study</title><link>https://manifold.cs.ucl.ac.uk/publication/multimodal-brain-age-prediction-and-cardiovascular-risk-the-whitehall-ii-mri-sub-study/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/multimodal-brain-age-prediction-and-cardiovascular-risk-the-whitehall-ii-mri-sub-study/</guid><description/></item><item><title>Multimodality neuroimaging brain-age in UK biobank: relationship to biomedical, lifestyle, and cognitive factors</title><link>https://manifold.cs.ucl.ac.uk/publication/multimodality-neuroimaging-brain-age-in-uk-biobank-relationship-to-biomedical-lifestyle-and-cognitive-factors/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/multimodality-neuroimaging-brain-age-in-uk-biobank-relationship-to-biomedical-lifestyle-and-cognitive-factors/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.neurobiolaging.2020.03.014" target="_blank" rel="noopener">https://doi.org/10.1016/j.neurobiolaging.2020.03.014&lt;/a>&lt;/p></description></item><item><title>Prediction of brain age and cognitive age: Quantifying brain and cognitive maintenance in aging</title><link>https://manifold.cs.ucl.ac.uk/publication/prediction-of-brain-age-and-cognitive-age-quantifying-brain-and-cognitive-maintenance-in-aging/</link><pubDate>Wed, 01 Jan 2020 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/prediction-of-brain-age-and-cognitive-age-quantifying-brain-and-cognitive-maintenance-in-aging/</guid><description/></item><item><title>Accelerated brain ageing and disability in multiple sclerosis</title><link>https://manifold.cs.ucl.ac.uk/publication/accelerated-brain-ageing-and-disability-in-multiple-sclerosis/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/accelerated-brain-ageing-and-disability-in-multiple-sclerosis/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> JH Cole, J Raffel, T Friede, A Eshaghi, W Brownlee, D Chard, N De Stefano, C Enzinger, L Pirpamer, M Filippi, C Gasperini, MA Rocca, A Rovira, S Ruggieri, J Sastre-Garriga, ML Stromillo, BMJ Uitdehaag, H Vrenken, F Barkhof, R Nicholas, O Ciccarelli&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/584888" target="_blank" rel="noopener">https://doi.org/10.1101/584888&lt;/a>&lt;/p></description></item><item><title>Chronic pain is associated with a brain aging biomarker in community-dwelling older adults</title><link>https://manifold.cs.ucl.ac.uk/publication/chronic-pain-is-associated-with-a-brain-aging-biomarker-in-community-dwelling-older-adults/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/chronic-pain-is-associated-with-a-brain-aging-biomarker-in-community-dwelling-older-adults/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Yenisel Cruz-Almeida, Roger B. Fillingim, Joseph L. Riley, Adam J. Woods, Eric Porges, Ronald Cohen, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1097/j.pain.0000000000001491" target="_blank" rel="noopener">https://doi.org/10.1097/j.pain.0000000000001491&lt;/a>&lt;/p></description></item><item><title>Dopamine D2/D3 receptor abnormalities after traumatic brain injury and their relationship to post-traumatic depression</title><link>https://manifold.cs.ucl.ac.uk/publication/dopamine-d2-d3-receptor-abnormalities-after-traumatic-brain-injury-and-their-relationship-to-post-traumatic-depression/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/dopamine-d2-d3-receptor-abnormalities-after-traumatic-brain-injury-and-their-relationship-to-post-traumatic-depression/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Amy E. Jolly, Vanessa Raymont, admin, Alex Whittington, Gregory Scott, Sara De Simoni, Graham Searle, Roger N. Gunn, David J. Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.nicl.2019.101950" target="_blank" rel="noopener">https://doi.org/10.1016/j.nicl.2019.101950&lt;/a>&lt;/p></description></item><item><title>Increased brain age in adults with Prader-Willi syndrome</title><link>https://manifold.cs.ucl.ac.uk/publication/increased-brain-age-in-adults-with-prader-willi-syndrome/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/increased-brain-age-in-adults-with-prader-willi-syndrome/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Adriana M. Azor, James H. Cole, Anthony J. Holland, Maureen Dumba, Maneesh C. Patel, Angelique Sadlon, Anthony P. Goldstone, Katherine E. Manning&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.nicl.2019.101664" target="_blank" rel="noopener">https://doi.org/10.1016/j.nicl.2019.101664&lt;/a>&lt;/p></description></item><item><title>Interactive impact of childhood maltreatment, depression, and age on cortical brain structure: mega-analytic findings from a large multi-site cohort</title><link>https://manifold.cs.ucl.ac.uk/publication/interactive-impact-of-childhood-maltreatment-depression-and-age-on-cortical-brain-structure-mega-analytic-findings-from-a-large-multi-site-cohort/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/interactive-impact-of-childhood-maltreatment-depression-and-age-on-cortical-brain-structure-mega-analytic-findings-from-a-large-multi-site-cohort/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Leonardo Tozzi, Lisa Garczarek, Deborah Janowitz, Dan J. Stein, Katharina Wittfeld, Henrik Dobrowolny, Jim Lagopoulos, Sean N. Hatton, Ian B. Hickie, Angela Carballedo, Samantha J. Brooks, Daniella Vuletic, Anne Uhlmann, Ilya M. Veer, Henrik Walter, Robin Bülow, Henry Völzke, Johanna Klinger-König, Knut Schnell, Dieter Schoepf, Dominik Grotegerd, Nils Opel, Udo Dannlowski, Harald Kugel, Elisabeth Schramm, Carsten Konrad, Tilo Kircher, Dilara Jüksel, Igor Nenadić, Axel Krug, Tim Hahn, Olaf Steinsträter, Ronny Redlich, Dario Zaremba, Bartosz Zurowski, Cynthia H.Y. Fu, Danai Dima, admin, Hans J. Grabe, Colm G. Connolly, Tony T. Yang, Tiffany C. Ho, Kaja Z. LeWinn, Meng Li, Nynke A. Groenewold, Lauren E. Salminen, Martin Walter, Alan N Simmons, Theo G.M. van Erp, Neda Jahanshad, Bernhard T. Baune, Nic J.A. van der Wee, Marie-Jose van Tol, Brenda W.J.H. Penninx, Derrek P. Hibar, Paul M. Thompson, Dick J. Veltman, Lianne Schmaal, Thomas Frodl&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1017/s003329171900093x" target="_blank" rel="noopener">https://doi.org/10.1017/s003329171900093x&lt;/a>&lt;/p></description></item><item><title>Multi-modality neuroimaging brain-age in UK Biobank: relationship to biomedical, lifestyle and cognitive factors</title><link>https://manifold.cs.ucl.ac.uk/publication/multi-modality-neuroimaging-brain-age-in-uk-biobank-relationship-to-biomedical-lifestyle-and-cognitive-factors/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/multi-modality-neuroimaging-brain-age-in-uk-biobank-relationship-to-biomedical-lifestyle-and-cognitive-factors/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> James H Cole&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/812982" target="_blank" rel="noopener">https://doi.org/10.1101/812982&lt;/a>&lt;/p></description></item><item><title>Nonlinear biomarker interactions in conversion from Mild Cognitive Impairment to Alzheimer’s disease</title><link>https://manifold.cs.ucl.ac.uk/publication/nonlinear-biomarker-interactions-in-conversion-from-mild-cognitive-impairment-to-alzheimer-s-disease/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/nonlinear-biomarker-interactions-in-conversion-from-mild-cognitive-impairment-to-alzheimer-s-disease/</guid><description/></item><item><title>Pain, aging, and the brain: new pieces to a complex puzzle</title><link>https://manifold.cs.ucl.ac.uk/publication/pain-aging-and-the-brain-new-pieces-to-a-complex-puzzle/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/pain-aging-and-the-brain-new-pieces-to-a-complex-puzzle/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Yenisel Cruz-Almeida, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1097/j.pain.0000000000001757" target="_blank" rel="noopener">https://doi.org/10.1097/j.pain.0000000000001757&lt;/a>&lt;/p></description></item><item><title>Stratifying drug treatment of cognitive impairments after traumatic brain injury using neuroimaging</title><link>https://manifold.cs.ucl.ac.uk/publication/stratifying-drug-treatment-of-cognitive-impairments-after-traumatic-brain-injury-using-neuroimaging/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/stratifying-drug-treatment-of-cognitive-impairments-after-traumatic-brain-injury-using-neuroimaging/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Peter O Jenkins, Sara De Simoni, Niall J Bourke, Jessica Fleminger, Gregory Scott, David J Towey, William Svensson, Sameer Khan, Maneesh C Patel, Richard Greenwood, Daniel Friedland, Adam Hampshire, James H Cole, David J Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/brain/awz149" target="_blank" rel="noopener">https://doi.org/10.1093/brain/awz149&lt;/a>&lt;/p></description></item><item><title>Validation of a Novel Multivariate Method of Defining HIV-Associated Cognitive Impairment</title><link>https://manifold.cs.ucl.ac.uk/publication/validation-of-a-novel-multivariate-method-of-defining-hiv-associated-cognitive-impairment/</link><pubDate>Tue, 01 Jan 2019 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/validation-of-a-novel-multivariate-method-of-defining-hiv-associated-cognitive-impairment/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Jonathan Underwood, Davide De Francesco, James H Cole, Matthan W A Caan, Rosan A van Zoest, Ben A Schmand, David J Sharp, Caroline A Sabin, Peter Reiss, Alan Winston, P Reiss, F W N M Wit, J Schouten, K W Kooij, R A van Zoest, B C Elsenga, F R Janssen, M Heidenrijk, W Zikkenheiner, M van der Valk, N A Kootstra, A M Harskamp-Holwerda, I Maurer, M M Mangas Ruiz, A F Girigorie, J Villaudy, E Frankin, A Pasternak, B Berkhout, T van der Kuyl, P Portegies, B A Schmand, G J Geurtsen, J A ter Stege, M Klein Twennaar, C B L M Majoie, M W A Caan, T Su, K Weijer, P H L T Bisschop, A Kalsbeek, M Wezel, I Visser, H G Ruhé, C Franceschi, P Garagnani, C Pirazzini, M Capri, F Dall’Olio, M Chiricolo, S Salvioli, J Hoeijmakers, J Pothof, M Prins, M Martens, S Moll, J Berkel, M Totté, S Kovalev, M Gisslén, D Fuchs, H Zetterberg, A Winston, J Underwood, L McDonald, M Stott, K Legg, A Lovell, O Erlwein, N Doyle, C Kingsley, D J Sharp, R Leech, J H Cole, S Zaheri, M M J Hillebregt, Y M C Ruijs, D P Benschop, D Burger, M de Graaff-Teulen, G Guaraldi, A Bürkle, T Sindlinger, M Moreno-Villanueva, A Keller, C Sabin, D de Francesco, C Libert, S Dewaele, Marta Boffito, Paddy Mallon, Frank Post, Caroline Sabin, Memory Sachikonye, Alan Winston, Jane Anderson, David Asboe, Marta Boffito, Lucy Garvey, Paddy Mallon, Frank Post, Anton Pozniak, Caroline Sabin, Memory Sachikonye, Jaime Vera, Ian Williams, Alan Winston, Frank Post, Lucy Campbell, Selin Yurdakul, Sara Okumu, Louise Pollard, Ian Williams, Damilola Otiko, Laura Phillips, Rosanna Laverick, Martin Fisher, Amanda Clarke, Jaime Vera, Andrew Bexley, Celia Richardson, Paddy Mallon, Alan Macken, Bijan Ghavani-Kia, Joanne Maher, Maria Byrne, Ailbhe Flaherty, Jane Anderson, Sifiso Mguni, Rebecca Clark, Rhiannon Nevin-Dolan, Sambasivarao Pelluri, Margaret Johnson, Nnenna Ngwu, Nargis Hemat, Martin Jones, Anne Carroll, Andrew Whitehouse, Laura Burgess, Daphne Babalis, Alan Winston, Lucy Garvey, Jonathan Underwood, Matthew Stott, Linda McDonald, Marta Boffito, David Asboe, Anton Pozniak, Chris Higgs, Elisha Seah, Stephen Fletcher, Michelle Anthonipillai, Ashley Moyes, Katie Deats, Irtiza Syed, Clive Matthews&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/ofid/ofz198" target="_blank" rel="noopener">https://doi.org/10.1093/ofid/ofz198&lt;/a>&lt;/p></description></item><item><title>Active Acquisition for multimodal neuroimaging</title><link>https://manifold.cs.ucl.ac.uk/publication/active-acquisition-for-multimodal-neuroimaging/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/active-acquisition-for-multimodal-neuroimaging/</guid><description/></item><item><title>admin/brainageR 1.0</title><link>https://manifold.cs.ucl.ac.uk/publication/james-cole-brainager-1-0/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/james-cole-brainager-1-0/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> James H. Cole&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.5281/zenodo.1346292" target="_blank" rel="noopener">https://doi.org/10.5281/zenodo.1346292&lt;/a>&lt;/p></description></item><item><title>Associations between polygenic risk scores for four psychiatric illnesses and brain structure using multivariate pattern recognition</title><link>https://manifold.cs.ucl.ac.uk/publication/associations-between-polygenic-risk-scores-for-four-psychiatric-illnesses-and-brain-structure-using-multivariate-pattern-recognition/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/associations-between-polygenic-risk-scores-for-four-psychiatric-illnesses-and-brain-structure-using-multivariate-pattern-recognition/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Siri Ranlund, Maria Joao Rosa, Simone de Jong, admin, Marinos Kyriakopoulos, Cynthia H.Y. Fu, Mitul A. Mehta, Danai Dima&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.nicl.2018.10.008" target="_blank" rel="noopener">https://doi.org/10.1016/j.nicl.2018.10.008&lt;/a>&lt;/p></description></item><item><title>Bayesian Optimization for Neuroimaging Pre-processing in Brain Age Classification and Prediction</title><link>https://manifold.cs.ucl.ac.uk/publication/bayesian-optimization-for-neuroimaging-pre-processing-in-brain-age-classification-and-prediction/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/bayesian-optimization-for-neuroimaging-pre-processing-in-brain-age-classification-and-prediction/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Jenessa Lancaster, Romy Lorenz, Rob Leech, admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.3389/fnagi.2018.00028" target="_blank" rel="noopener">https://doi.org/10.3389/fnagi.2018.00028&lt;/a>&lt;/p></description></item><item><title>Brain age and other bodily ‘ages’: implications for neuropsychiatry</title><link>https://manifold.cs.ucl.ac.uk/publication/brain-age-and-other-bodily-ages-implications-for-neuropsychiatry/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/brain-age-and-other-bodily-ages-implications-for-neuropsychiatry/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> James H Cole, Riccardo E. Marioni, Sarah E. Harris, Ian J. Deary&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1038/s41380-018-0098-1" target="_blank" rel="noopener">https://doi.org/10.1038/s41380-018-0098-1&lt;/a>&lt;/p></description></item><item><title>Clinical research cerebral MRI findings in HIV-positive subjects and appropriate controls</title><link>https://manifold.cs.ucl.ac.uk/publication/clinical-research-cerebral-mri-findings-in-hiv-positive-subjects-and-appropriate-controls/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/clinical-research-cerebral-mri-findings-in-hiv-positive-subjects-and-appropriate-controls/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Srishti Chhabra, Jonathan Underwood, admin, Matthan Caan, Adam Waldman, Peter Reiss, Caroline A. Sabin, David J. Sharp, Alan Winston&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1097/qad.0000000000001910" target="_blank" rel="noopener">https://doi.org/10.1097/qad.0000000000001910&lt;/a>&lt;/p></description></item><item><title>Dopaminergic abnormalities following traumatic brain injury</title><link>https://manifold.cs.ucl.ac.uk/publication/dopaminergic-abnormalities-following-traumatic-brain-injury/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/dopaminergic-abnormalities-following-traumatic-brain-injury/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Peter O Jenkins, Sara De Simoni, Niall J Bourke, Jessica Fleminger, Gregory Scott, David J Towey, William Svensson, Sameer Khan, Maneesh Patel, Richard Greenwood, James H Cole, David J Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/brain/awx357" target="_blank" rel="noopener">https://doi.org/10.1093/brain/awx357&lt;/a>&lt;/p></description></item><item><title>Multivariate Pattern Analysis of Volumetric Neuroimaging Data and Its Relationship With Cognitive Function in Treated HIV Disease</title><link>https://manifold.cs.ucl.ac.uk/publication/multivariate-pattern-analysis-of-volumetric-neuroimaging-data-and-its-relationship-with-cognitive-function-in-treated-hiv-disease/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/multivariate-pattern-analysis-of-volumetric-neuroimaging-data-and-its-relationship-with-cognitive-function-in-treated-hiv-disease/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Jonathan Underwood, admin, Robert Leech, David J. Sharp, Alan Winston&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1097/qai.0000000000001687" target="_blank" rel="noopener">https://doi.org/10.1097/qai.0000000000001687&lt;/a>&lt;/p></description></item><item><title>Neuroimaging Studies Illustrate the Commonalities Between Ageing and Brain Diseases</title><link>https://manifold.cs.ucl.ac.uk/publication/neuroimaging-studies-illustrate-the-commonalities-between-ageing-and-brain-diseases/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/neuroimaging-studies-illustrate-the-commonalities-between-ageing-and-brain-diseases/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/bies.201700221" target="_blank" rel="noopener">https://doi.org/10.1002/bies.201700221&lt;/a>&lt;/p></description></item><item><title>No Evidence for Accelerated Aging-Related Brain Pathology in Treated Human Immunodeficiency Virus: Longitudinal Neuroimaging Results From the Comorbidity in Relation to AIDS (COBRA) Project</title><link>https://manifold.cs.ucl.ac.uk/publication/no-evidence-for-accelerated-aging-related-brain-pathology-in-treated-human-immunodeficiency-virus-longitudinal-neuroimaging-results-from-the-comorbidity-in-relation-to-aids-cobra-project/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/no-evidence-for-accelerated-aging-related-brain-pathology-in-treated-human-immunodeficiency-virus-longitudinal-neuroimaging-results-from-the-comorbidity-in-relation-to-aids-cobra-project/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> James H Cole, Matthan W A Caan, Jonathan Underwood, Davide De Francesco, Rosan A van Zoest, Ferdinand W N M Wit, Henk J M M Mutsaerts, Rob Leech, Gert J Geurtsen, Peter Portegies, Charles B L M Majoie, Maarten F Schim van der Loeff, Caroline A Sabin, Peter Reiss, Alan Winston, David J Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/cid/cix1124" target="_blank" rel="noopener">https://doi.org/10.1093/cid/cix1124&lt;/a>&lt;/p></description></item><item><title>Quantification of the biological age of the brain using neuroimaging</title><link>https://manifold.cs.ucl.ac.uk/publication/quantification-of-the-biological-age-of-the-brain-using-neuroimaging/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/quantification-of-the-biological-age-of-the-brain-using-neuroimaging/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> James Howard Cole, Katja Franke, Nicolas Cherbuin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.31219/osf.io/3b6zu" target="_blank" rel="noopener">https://doi.org/10.31219/osf.io/3b6zu&lt;/a>&lt;/p></description></item><item><title>Spatial patterns of progressive brain volume loss after moderate-severe traumatic brain injury</title><link>https://manifold.cs.ucl.ac.uk/publication/spatial-patterns-of-progressive-brain-volume-loss-after-moderate-severe-traumatic-brain-injury/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/spatial-patterns-of-progressive-brain-volume-loss-after-moderate-severe-traumatic-brain-injury/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> James H Cole, Amy Jolly, Sara de Simoni, Niall Bourke, Maneesh C Patel, Gregory Scott, David J Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/brain/awx354" target="_blank" rel="noopener">https://doi.org/10.1093/brain/awx354&lt;/a>&lt;/p></description></item><item><title>The ‘COmorBidity in Relation to AIDS’ (COBRA) cohort: Design, methods and participant characteristics</title><link>https://manifold.cs.ucl.ac.uk/publication/the-comorbidity-in-relation-to-aids-cobra-cohort-design-methods-and-participant-characteristics/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/the-comorbidity-in-relation-to-aids-cobra-cohort-design-methods-and-participant-characteristics/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Davide De Francesco, Ferdinand W. Wit, admin, Neeltje A. Kootstra, Alan Winston, Caroline A. Sabin, Jonathan Underwood, Rosan A. van Zoest, Judith Schouten, Katherine W. Kooij, Maria Prins, Giovanni Guaraldi, Matthan W. A. Caan, David Burger, Claudio Franceschi, Claude Libert, Alexander Bürkle, Peter Reiss&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1371/journal.pone.0191791" target="_blank" rel="noopener">https://doi.org/10.1371/journal.pone.0191791&lt;/a>&lt;/p></description></item><item><title>Unravelling the GSK3β-related genotypic interaction network influencing hippocampal volume in recurrent major depressive disorder</title><link>https://manifold.cs.ucl.ac.uk/publication/unravelling-the-gsk3-related-genotypic-interaction-network-influencing-hippocampal-volume-in-recurrent-major-depressive-disorder/</link><pubDate>Mon, 01 Jan 2018 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/unravelling-the-gsk3-related-genotypic-interaction-network-influencing-hippocampal-volume-in-recurrent-major-depressive-disorder/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Becky Inkster, Andy Simmons, admin, Erwin Schoof, Rune Linding, Tom Nichols, Pierandrea Muglia, Florian Holsboer, Philipp G. Sämann, Peter McGuffin, Cynthia H.Y. Fu, Kamilla Miskowiak, Paul M. Matthews, Gwyneth Zai, Kristin Nicodemus&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1097/ypg.0000000000000203" target="_blank" rel="noopener">https://doi.org/10.1097/ypg.0000000000000203&lt;/a>&lt;/p></description></item><item><title>Altered caudate connectivity is associated with executive dysfunction after traumatic brain injury</title><link>https://manifold.cs.ucl.ac.uk/publication/altered-caudate-connectivity-is-associated-with-executive-dysfunction-after-traumatic-brain-injury/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/altered-caudate-connectivity-is-associated-with-executive-dysfunction-after-traumatic-brain-injury/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Sara De Simoni, Peter O Jenkins, Niall J Bourke, Jessica J Fleminger, Peter J Hellyer, Amy E Jolly, Maneesh C Patel, James H Cole, Robert Leech, David J Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/brain/awx309" target="_blank" rel="noopener">https://doi.org/10.1093/brain/awx309&lt;/a>&lt;/p></description></item><item><title>Bayesian Optimisation for Neuroimaging Pre-processing in Brain Age Prediction</title><link>https://manifold.cs.ucl.ac.uk/publication/bayesian-optimisation-for-neuroimaging-pre-processing-in-brain-age-prediction/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/bayesian-optimisation-for-neuroimaging-pre-processing-in-brain-age-prediction/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Jenessa Lancaster, Romy Lorenz, Rob Leech, James H Cole&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1101/201061" target="_blank" rel="noopener">https://doi.org/10.1101/201061&lt;/a>&lt;/p></description></item><item><title>Brain age predicts mortality</title><link>https://manifold.cs.ucl.ac.uk/publication/brain-age-predicts-mortality/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/brain-age-predicts-mortality/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> J H Cole, S J Ritchie, M E Bastin, M C Valdés Hernández, S Muñoz Maniega, N Royle, J Corley, A Pattie, S E Harris, Q Zhang, N R Wray, P Redmond, R E Marioni, J M Starr, S R Cox, J M Wardlaw, D J Sharp, I J Deary&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1038/mp.2017.62" target="_blank" rel="noopener">https://doi.org/10.1038/mp.2017.62&lt;/a>&lt;/p></description></item><item><title>Brain-predicted age in Down syndrome is associated with beta amyloid deposition and cognitive decline</title><link>https://manifold.cs.ucl.ac.uk/publication/brain-predicted-age-in-down-syndrome-is-associated-with-beta-amyloid-deposition-and-cognitive-decline/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/brain-predicted-age-in-down-syndrome-is-associated-with-beta-amyloid-deposition-and-cognitive-decline/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin, Tiina Annus, Liam R. Wilson, Ridhaa Remtulla, Young T. Hong, Tim D. Fryer, Julio Acosta-Cabronero, Arturo Cardenas-Blanco, Robert Smith, David K. Menon, Shahid H. Zaman, Peter J. Nestor, Anthony J. Holland&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.neurobiolaging.2017.04.006" target="_blank" rel="noopener">https://doi.org/10.1016/j.neurobiolaging.2017.04.006&lt;/a>&lt;/p></description></item><item><title>Classification of Major Depressive Disorder via Multi-site Weighted LASSO Model</title><link>https://manifold.cs.ucl.ac.uk/publication/classification-of-major-depressive-disorder-via-multi-site-weighted-lasso-model/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/classification-of-major-depressive-disorder-via-multi-site-weighted-lasso-model/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Dajiang Zhu, Brandalyn C. Riedel, Neda Jahanshad, Nynke A. Groenewold, Dan J. Stein, Ian H. Gotlib, Matthew D. Sacchet, Danai Dima, admin, Cynthia H. Y. Fu, Henrik Walter, Ilya M. Veer, Thomas Frodl, Lianne Schmaal, Dick J. Veltman, Paul M. Thompson&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1007/978-3-319-66179-7_19" target="_blank" rel="noopener">https://doi.org/10.1007/978-3-319-66179-7_19&lt;/a>&lt;/p></description></item><item><title>Familial and environmental influences on brain volumes in twins with schizophrenia</title><link>https://manifold.cs.ucl.ac.uk/publication/familial-and-environmental-influences-on-brain-volumes-in-twins-with-schizophrenia/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/familial-and-environmental-influences-on-brain-volumes-in-twins-with-schizophrenia/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Marco M. Picchioni, Fruhling Rijsdijk, Timothea Toulopoulou, Christopher Chaddock, admin, Ulrich Ettinger, Ana Oses, Hugo Metcalfe, Robin M. Murray, Philip McGuire&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1503/jpn.140277" target="_blank" rel="noopener">https://doi.org/10.1503/jpn.140277&lt;/a>&lt;/p></description></item><item><title>Gray and White Matter Abnormalities in Treated Human Immunodeficiency Virus Disease and Their Relationship to Cognitive Function</title><link>https://manifold.cs.ucl.ac.uk/publication/gray-and-white-matter-abnormalities-in-treated-human-immunodeficiency-virus-disease-and-their-relationship-to-cognitive-function/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/gray-and-white-matter-abnormalities-in-treated-human-immunodeficiency-virus-disease-and-their-relationship-to-cognitive-function/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Jonathan Underwood, admin, Matthan Caan, Davide De Francesco, Robert Leech, Rosan A. van Zoest, Tanja Su, Gert J. Geurtsen, Ben A. Schmand, Peter Portegies, Maria Prins, Ferdinand W. N. M. Wit, Caroline A. Sabin, Charles Majoie, Peter Reiss, Alan Winston, David J. Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/cid/cix301" target="_blank" rel="noopener">https://doi.org/10.1093/cid/cix301&lt;/a>&lt;/p></description></item><item><title>High Cellular Monocyte Activation in People Living With Human Immunodeficiency Virus on Combination Antiretroviral Therapy and Lifestyle-Matched Controls Is Associated With Greater Inflammation in Cerebrospinal Fluid</title><link>https://manifold.cs.ucl.ac.uk/publication/high-cellular-monocyte-activation-in-people-living-with-human-immunodeficiency-virus-on-combination-antiretroviral-therapy-and-lifestyle-matched-controls-is-associated-with-greater-inflammation-in-cerebrospinal-fluid/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/high-cellular-monocyte-activation-in-people-living-with-human-immunodeficiency-virus-on-combination-antiretroviral-therapy-and-lifestyle-matched-controls-is-associated-with-greater-inflammation-in-cerebrospinal-fluid/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Thijs Booiman, Ferdinand W. Wit, Irma Maurer, Davide De Francesco, Caroline A. Sabin, Agnes M. Harskamp, Maria Prins, Paolo Garagnani, Chiara Pirazzini, Claudio Franceschi, Dietmar Fuchs, Magnus Gisslén, Alan Winston, Peter Reiss, Neeltje A. Kootstra, P. Reiss, F. W. N. M. Wit, J. Schouten, K. W. Kooij, R. A. van Zoest, B. C. Elsenga, F. R. Janssen, M. Heidenrijk, W. Zikkenheiner, M. van der Valk, N. A. Kootstra, T. Booiman, A. M. Harskamp-Holwerda, B. Boeser-Nunnink, I. Maurer, M. M. Mangas Ruiz, A. F. Girigorie, J. Villaudy, E. Frankin, A. Pasternak, B. Berkhout, T. van der Kuyl, P. Portegies, B. A. Schmand, G. J. Geurtsen, J. A. ter Stege, M. Klein Twennaar, C. B. L. M. Majoie, M. W. A. Caan, T. Su, K. Weijer, P. H. L. T. Bisschop, A. Kalsbeek, M. Wezel, I. Visser, H. G. Ruhé, C. Franceschi, P. Garagnani, C. Pirazzini, M. Capri, F. Dall’Olio, M. Chiricolo, S. Salvioli, J. Hoeijmakers, J. Pothof, M. Prins, M. Martens, S. Moll, J. Berkel, M. Totté, S. Kovalev, M. Gisslén, D. Fuchs, H. Zetterberg, A. Winston, J. Underwood, L. McDonald, M. Stott, K. Legg, A. Lovell, O. Erlwein, N. Doyle, C. Kingsley, D. J. Sharp, R. Leech, J. H. Cole, S. Zaheri, M. M. J. Hillebregt, Y. M. C. Ruijs, D. P. Benschop, D. Burger, M. de Graaff-Teulen, G. Guaraldi, A. Bürkle, T. Sindlinger, M. Moreno-Villanueva, A. Keller, C. Sabin, D. de Francesco, C. Libert, S. Dewaele&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/ofid/ofx108" target="_blank" rel="noopener">https://doi.org/10.1093/ofid/ofx108&lt;/a>&lt;/p></description></item><item><title>Increased brain-predicted aging in treated HIV disease</title><link>https://manifold.cs.ucl.ac.uk/publication/increased-brain-predicted-aging-in-treated-hiv-disease/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/increased-brain-predicted-aging-in-treated-hiv-disease/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin, Jonathan Underwood, Matthan W.A. Caan, Davide De Francesco, Rosan A. van Zoest, Robert Leech, Ferdinand W.N.M. Wit, Peter Portegies, Gert J. Geurtsen, Ben A. Schmand, Maarten F. Schim van der Loeff, Claudio Franceschi, Caroline A. Sabin, Charles B.L.M. Majoie, Alan Winston, Peter Reiss, David J. Sharp, J. Schouten, K.W. Kooij, B.C. Elsenga, F.R. Janssen, M. Heidenrijk, J.H.N. Schrijver, W. Zikkenheiner, M. van der Valk, A. Henderiks, N.A. Kootstra, A.M. Harskamp-Holwerda, I. Maurer, M.M. Mangas Ruiz, T. Booiman, A.F. Girigorie, J. Villaudy, E. Frankin, A. Pasternak, B. Berkhout, T. van der Kuyl, J.A. ter Stege, M. Klein Twennaar, T. Su, E. Siteur-Van Rijnstra, K. Weijer, P.H.L.T. Bisschop, A. Kalsbeek, M. Wezel, I. Visser, H.G. Ruhé, L. Tembo, M. Stott, K. Legg, A. Lovell, O. Erlwein, N. Doyle, P. Norsworthy, P. Garagnani, C. Pirazzini, M. Capri, F. Dall’Olio, M. Chiricolo, S. Salviol, J. Hoeijmakers, J. Pothof, D. Burger, M. de Graaff-Teulen, A. Bürkle, T. Sindlinger, M. Moreno-Villanueva, A. Keller, M. Prins, M. Martens, S. Moll, J. Berkel, L. Möller, G.R. Visser, S. Zaheri, M.M.J. Hillebregt, Y.M.C. Ruijs, D.P. Benschop, M. Gisslén, D. Fuchs, H. Zetterberg, C. Libert, S. Dewaele, G. Guaraldi&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1212/wnl.0000000000003790" target="_blank" rel="noopener">https://doi.org/10.1212/wnl.0000000000003790&lt;/a>&lt;/p></description></item><item><title>Minocycline reduces chronic microglial activation after brain trauma but increases neurodegeneration</title><link>https://manifold.cs.ucl.ac.uk/publication/minocycline-reduces-chronic-microglial-activation-after-brain-trauma-but-increases-neurodegeneration/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/minocycline-reduces-chronic-microglial-activation-after-brain-trauma-but-increases-neurodegeneration/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Gregory Scott, Henrik Zetterberg, Amy Jolly, James H Cole, Sara De Simoni, Peter O Jenkins, Claire Feeney, David R Owen, Anne Lingford-Hughes, Oliver Howes, Maneesh C Patel, Anthony P Goldstone, Roger N Gunn, Kaj Blennow, Paul M Matthews, David J Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/brain/awx339" target="_blank" rel="noopener">https://doi.org/10.1093/brain/awx339&lt;/a>&lt;/p></description></item><item><title>Neuroimaging-derived brain-age: an ageing biomarker?</title><link>https://manifold.cs.ucl.ac.uk/publication/neuroimaging-derived-brain-age-an-ageing-biomarker/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/neuroimaging-derived-brain-age-an-ageing-biomarker/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.18632/aging.101286" target="_blank" rel="noopener">https://doi.org/10.18632/aging.101286&lt;/a>&lt;/p></description></item><item><title>Predicting Age Using Neuroimaging: Innovative Brain Ageing Biomarkers</title><link>https://manifold.cs.ucl.ac.uk/publication/predicting-age-using-neuroimaging-innovative-brain-ageing-biomarkers/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/predicting-age-using-neuroimaging-innovative-brain-ageing-biomarkers/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin, Katja Franke&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.tins.2017.10.001" target="_blank" rel="noopener">https://doi.org/10.1016/j.tins.2017.10.001&lt;/a>&lt;/p></description></item><item><title>Predicting brain age with deep learning from raw imaging data results in a reliable and heritable biomarker</title><link>https://manifold.cs.ucl.ac.uk/publication/predicting-brain-age-with-deep-learning-from-raw-imaging-data-results-in-a-reliable-and-heritable-biomarker/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/predicting-brain-age-with-deep-learning-from-raw-imaging-data-results-in-a-reliable-and-heritable-biomarker/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin, Rudra P.K. Poudel, Dimosthenis Tsagkrasoulis, Matthan W.A. Caan, Claire Steves, Tim D. Spector, Giovanni Montana&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.neuroimage.2017.07.059" target="_blank" rel="noopener">https://doi.org/10.1016/j.neuroimage.2017.07.059&lt;/a>&lt;/p></description></item><item><title>Serum insulin‐like growth factor‐&lt;scp>I&lt;/scp>levels are associated with improved white matter recovery after traumatic brain injury</title><link>https://manifold.cs.ucl.ac.uk/publication/serum-insulin-like-growth-factor-scp-i-scp-levels-are-associated-with-improved-white-matter-recovery-after-traumatic-brain-injury/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/serum-insulin-like-growth-factor-scp-i-scp-levels-are-associated-with-improved-white-matter-recovery-after-traumatic-brain-injury/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Claire Feeney, David J. Sharp, Peter J. Hellyer, Amy E. Jolly, admin, Gregory Scott, David Baxter, Sagar Jilka, Ewan Ross, Timothy E. Ham, Peter O. Jenkins, Lucia M. Li, Nikos Gorgoraptis, Mark Midwinter, Anthony P. Goldstone&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/ana.24971" target="_blank" rel="noopener">https://doi.org/10.1002/ana.24971&lt;/a>&lt;/p></description></item><item><title>Structural Brain Abnormalities in Successfully Treated HIV Infection: Associations With Disease and Cerebrospinal Fluid Biomarkers</title><link>https://manifold.cs.ucl.ac.uk/publication/structural-brain-abnormalities-in-successfully-treated-hiv-infection-associations-with-disease-and-cerebrospinal-fluid-biomarkers/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/structural-brain-abnormalities-in-successfully-treated-hiv-infection-associations-with-disease-and-cerebrospinal-fluid-biomarkers/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Rosan A van Zoest, Jonathan Underwood, Davide De Francesco, Caroline A Sabin, James H Cole, Ferdinand W Wit, Matthan W A Caan, Neeltje A Kootstra, Dietmar Fuchs, Henrik Zetterberg, Charles B L M Majoie, Peter Portegies, Alan Winston, David J Sharp, Magnus Gisslén, Peter Reiss, P Reiss, A Winston, F W Wit, M Prins, M F Schim van der Loeff, J Schouten, B Schmand, G J Geurtsen, D J Sharp, M W A Caan, C Majoie, J Villaudy, B Berkhout, N A Kootstra, M Gisslén, A Pasternak, C A Sabin, G Guaraldi, A Bürkle, C Libert, C Franceschi, A Kalsbeek, E Fliers, J Hoeijmakers, J Pothof, M van der Valk, P H Bisschop, P Portegies, S Zaheri, D Burger, P Reiss, A Winston, F W Wit, J H Cole, M W A Caan, J Villaudy, N A Kootstra, M F Schim van der Loeff, M Gisslén, C A Sabin, A Bürkle, W Zikkenheiner, P Reiss, W Zikkenheiner, F W Wit, F R Janssen, A Winston, F W Wit, J Underwood, J Schouten, K W Kooij, R A van Zoest, N Doyle, M Prins, M Schim van der Loeff, P Portegies, B A Schmand, G J Geurtsen, E Verheij, S O Verboeket, B C Elsenga, M van der Valk, S Zaheri, M M J Hillebregt, Y M C Ruijs, D P Benschop, L Tembo, L McDonald, M Stott, K Legg, A Lovell, O Erlwein, C Kingsley, P Norsworthy, S Mullaney, T Kruijer, L del Grande, V Olthof, G R Visser, L May, F Verbraak, N Demirkaya, I Visser, G Guaraldi, D J Sharp, M W A Caan, J H Cole, C B L M Majoie, T Su, R Leech, J Huguet, J Villaudy, E Frankin, A Pasternak, B Berkhout, A van der Kuyl, K Weijer, E Siteur-Van Rijnstra, N A Kootstra, M Gisslén, A M Harskamp-Holwerda, I Maurer, M M Mangas Ruiz, A F Girigorie, B Boeser-Nunnink, A Kalsbeek, P H L T Bisschop, D Burger, M de Graaff-Teulen, J Hoeijmakers, J Pothof, C Libert, S Dewaele, C Franceschi, P Garagnani, C Pirazzini, M Capri, F Dall’Olio, M Chiricolo, S Salvioli, D Fuchs, H Zetterberg, D Weber, T Grune, E H J M Jansen, C A Sabin, D De Francesco, F W Wit, A Bürkle, T Sindlinger, S Oehlke, W Zikkenheiner, R A van Zoest&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/infdis/jix553" target="_blank" rel="noopener">https://doi.org/10.1093/infdis/jix553&lt;/a>&lt;/p></description></item><item><title>Structural brain changes in medically refractory focal epilepsy resemble premature brain aging</title><link>https://manifold.cs.ucl.ac.uk/publication/structural-brain-changes-in-medically-refractory-focal-epilepsy-resemble-premature-brain-aging/</link><pubDate>Sun, 01 Jan 2017 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/structural-brain-changes-in-medically-refractory-focal-epilepsy-resemble-premature-brain-aging/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Heath R. Pardoe, admin, Karen Blackmon, Thomas Thesen, Ruben Kuzniecky&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.eplepsyres.2017.03.007" target="_blank" rel="noopener">https://doi.org/10.1016/j.eplepsyres.2017.03.007&lt;/a>&lt;/p></description></item><item><title>Amyloid pathology and axonal injury after brain trauma</title><link>https://manifold.cs.ucl.ac.uk/publication/amyloid-pathology-and-axonal-injury-after-brain-trauma/</link><pubDate>Fri, 01 Jan 2016 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/amyloid-pathology-and-axonal-injury-after-brain-trauma/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Gregory Scott, Anil F. Ramlackhansingh, Paul Edison, Peter Hellyer, admin, Mattia Veronese, Rob Leech, Richard J. Greenwood, Federico E. Turkheimer, Steve M. Gentleman, Rolf A. Heckemann, Paul M. Matthews, David J. Brooks, David J. Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1212/wnl.0000000000002413" target="_blank" rel="noopener">https://doi.org/10.1212/wnl.0000000000002413&lt;/a>&lt;/p></description></item><item><title>Common and distinct patterns of grey-matter volume alteration in major depression and bipolar disorder: evidence from voxel-based meta-analysis</title><link>https://manifold.cs.ucl.ac.uk/publication/common-and-distinct-patterns-of-grey-matter-volume-alteration-in-major-depression-and-bipolar-disorder-evidence-from-voxel-based-meta-analysis/</link><pubDate>Fri, 01 Jan 2016 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/common-and-distinct-patterns-of-grey-matter-volume-alteration-in-major-depression-and-bipolar-disorder-evidence-from-voxel-based-meta-analysis/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> T Wise, J Radua, E Via, N Cardoner, O Abe, T M Adams, F Amico, Y Cheng, J H Cole, C de Azevedo Marques Périco, D P Dickstein, T F D Farrow, T Frodl, G Wagner, I H Gotlib, O Gruber, B J Ham, D E Job, M J Kempton, M J Kim, P C M P Koolschijn, G S Malhi, D Mataix-Cols, A M McIntosh, A C Nugent, J T O&amp;rsquo;Brien, S Pezzoli, M L Phillips, P S Sachdev, G Salvadore, S Selvaraj, A C Stanfield, A J Thomas, M J van Tol, N J A van der Wee, D J Veltman, A H Young, C H Fu, A J Cleare, D Arnone&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1038/mp.2016.72" target="_blank" rel="noopener">https://doi.org/10.1038/mp.2016.72&lt;/a>&lt;/p></description></item><item><title>Neuroinflammation in treated HIV-positive individuals</title><link>https://manifold.cs.ucl.ac.uk/publication/neuroinflammation-in-treated-hiv-positive-individuals/</link><pubDate>Fri, 01 Jan 2016 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/neuroinflammation-in-treated-hiv-positive-individuals/</guid><description/></item><item><title>Seeds of neuroendocrine doubt</title><link>https://manifold.cs.ucl.ac.uk/publication/seeds-of-neuroendocrine-doubt/</link><pubDate>Fri, 01 Jan 2016 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/seeds-of-neuroendocrine-doubt/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Claire Feeney, Gregory P. Scott, admin, Magdalena Sastre, Anthony P. Goldstone, Robert Leech&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1038/nature18602" target="_blank" rel="noopener">https://doi.org/10.1038/nature18602&lt;/a>&lt;/p></description></item><item><title>White matter hyperintensities in relation to cognition in HIV-infected men with sustained suppressed viral load on combination antiretroviral therapy</title><link>https://manifold.cs.ucl.ac.uk/publication/white-matter-hyperintensities-in-relation-to-cognition-in-hiv-infected-men-with-sustained-suppressed-viral-load-on-combination-antiretroviral-therapy/</link><pubDate>Fri, 01 Jan 2016 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/white-matter-hyperintensities-in-relation-to-cognition-in-hiv-infected-men-with-sustained-suppressed-viral-load-on-combination-antiretroviral-therapy/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Tanja Su, Ferdinand W.N.M. Wit, Matthan W.A. Caan, Judith Schouten, Maria Prins, Gert J. Geurtsen, admin, David J. Sharp, Edo Richard, Liesbeth Reneman, Peter Portegies, Peter Reiss, Charles B. Majoie&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1097/qad.0000000000001133" target="_blank" rel="noopener">https://doi.org/10.1097/qad.0000000000001133&lt;/a>&lt;/p></description></item><item><title>White matter structure alterations in HIV-1-infected men with sustained suppression of viraemia on treatment</title><link>https://manifold.cs.ucl.ac.uk/publication/white-matter-structure-alterations-in-hiv-1-infected-men-with-sustained-suppression-of-viraemia-on-treatment/</link><pubDate>Fri, 01 Jan 2016 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/white-matter-structure-alterations-in-hiv-1-infected-men-with-sustained-suppression-of-viraemia-on-treatment/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Tanja Su, Matthan W.A. Caan, Ferdinand W.N.M. Wit, Judith Schouten, Gert J. Geurtsen, admin, David J. Sharp, Frans M. Vos, Maria Prins, Peter Portegies, Peter Reiss, Charles B. Majoie&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1097/qad.0000000000000945" target="_blank" rel="noopener">https://doi.org/10.1097/qad.0000000000000945&lt;/a>&lt;/p></description></item><item><title>Authors' reply</title><link>https://manifold.cs.ucl.ac.uk/publication/authors-reply/</link><pubDate>Thu, 01 Jan 2015 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/authors-reply/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Cynthia H.Y. Fu, Rebecca MacGregor Legge, Sarah Cohen-Woods, admin, Katherine J. Aitchison, Peter McGuffin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1192/bjp.207.4.363a" target="_blank" rel="noopener">https://doi.org/10.1192/bjp.207.4.363a&lt;/a>&lt;/p></description></item><item><title>Longitudinal Diffusion Tensor Imaging Shows Progressive Changes in White Matter in Huntington’s Disease</title><link>https://manifold.cs.ucl.ac.uk/publication/longitudinal-diffusion-tensor-imaging-shows-progressive-changes-in-white-matter-in-huntington-s-disease/</link><pubDate>Thu, 01 Jan 2015 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/longitudinal-diffusion-tensor-imaging-shows-progressive-changes-in-white-matter-in-huntington-s-disease/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Sarah Gregory, admin, Ruth E. Farmer, Elin M. Rees, Raymund A.C. Roos, Reiner Sprengelmeyer, Alexandra Durr, Bernhard Landwehrmeyer, Hui Zhang, Rachael I. Scahill, Sarah J. Tabrizi, Chris Frost, Nicola Z. Hobbs&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.3233/jhd-150173" target="_blank" rel="noopener">https://doi.org/10.3233/jhd-150173&lt;/a>&lt;/p></description></item><item><title>Modulatory effects of brain-derived neurotrophic factor Val66Met polymorphism on prefrontal regions in major depressive disorder</title><link>https://manifold.cs.ucl.ac.uk/publication/modulatory-effects-of-brain-derived-neurotrophic-factor-val66met-polymorphism-on-prefrontal-regions-in-major-depressive-disorder/</link><pubDate>Thu, 01 Jan 2015 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/modulatory-effects-of-brain-derived-neurotrophic-factor-val66met-polymorphism-on-prefrontal-regions-in-major-depressive-disorder/</guid><description/></item><item><title>Prediction of brain age suggests accelerated atrophy after traumatic brain injury</title><link>https://manifold.cs.ucl.ac.uk/publication/prediction-of-brain-age-suggests-accelerated-atrophy-after-traumatic-brain-injury/</link><pubDate>Thu, 01 Jan 2015 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/prediction-of-brain-age-suggests-accelerated-atrophy-after-traumatic-brain-injury/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin, Robert Leech, David J. Sharp&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/ana.24367" target="_blank" rel="noopener">https://doi.org/10.1002/ana.24367&lt;/a>&lt;/p></description></item><item><title>Selective vulnerability of Rich Club brain regions is an organizational principle of structural connectivity loss in Huntington’s disease</title><link>https://manifold.cs.ucl.ac.uk/publication/selective-vulnerability-of-rich-club-brain-regions-is-an-organizational-principle-of-structural-connectivity-loss-in-huntington-s-disease/</link><pubDate>Thu, 01 Jan 2015 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/selective-vulnerability-of-rich-club-brain-regions-is-an-organizational-principle-of-structural-connectivity-loss-in-huntington-s-disease/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Peter McColgan, Kiran K. Seunarine, Adeel Razi, admin, Sarah Gregory, Alexandra Durr, Raymund A. C. Roos, Julie C. Stout, Bernhard Landwehrmeyer, Rachael I. Scahill, Chris A. Clark, Geraint Rees&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1093/brain/awv259" target="_blank" rel="noopener">https://doi.org/10.1093/brain/awv259&lt;/a>&lt;/p></description></item><item><title>Short-interval observational data to inform clinical trial design in Huntington's disease</title><link>https://manifold.cs.ucl.ac.uk/publication/short-interval-observational-data-to-inform-clinical-trial-design-in-huntington-s-disease/</link><pubDate>Thu, 01 Jan 2015 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/short-interval-observational-data-to-inform-clinical-trial-design-in-huntington-s-disease/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> N. Z. Hobbs, R. E. Farmer, E. M. Rees, J. H. Cole, S. Haider, I. B. Malone, R. Sprengelmeyer, H. Johnson, H.-P. Mueller, S. D. Sussmuth, R. A. C. Roos, A. Durr, C. Frost, R. I. Scahill, B. Landwehrmeyer, S. J. Tabrizi&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1136/jnnp-2014-309768" target="_blank" rel="noopener">https://doi.org/10.1136/jnnp-2014-309768&lt;/a>&lt;/p></description></item><item><title>Subregional Hippocampal Morphology and Psychiatric Outcome in Adolescents Who Were Born Very Preterm and at Term</title><link>https://manifold.cs.ucl.ac.uk/publication/subregional-hippocampal-morphology-and-psychiatric-outcome-in-adolescents-who-were-born-very-preterm-and-at-term/</link><pubDate>Thu, 01 Jan 2015 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/subregional-hippocampal-morphology-and-psychiatric-outcome-in-adolescents-who-were-born-very-preterm-and-at-term/</guid><description/></item><item><title>Abnormal hippocampal morphology in dissociative identity disorder and post‐traumatic stress disorder correlates with childhood trauma and dissociative symptoms</title><link>https://manifold.cs.ucl.ac.uk/publication/abnormal-hippocampal-morphology-in-dissociative-identity-disorder-and-post-traumatic-stress-disorder-correlates-with-childhood-trauma-and-dissociative-symptoms/</link><pubDate>Wed, 01 Jan 2014 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/abnormal-hippocampal-morphology-in-dissociative-identity-disorder-and-post-traumatic-stress-disorder-correlates-with-childhood-trauma-and-dissociative-symptoms/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Sima Chalavi, Eline M. Vissia, Mechteld E. Giesen, Ellert R.S. Nijenhuis, Nel Draijer, admin, Paola Dazzan, Carmine M. Pariante, Sarah K. Madsen, Priya Rajagopalan, Paul M. Thompson, Arthur W. Toga, Dick J. Veltman, Antje A.T.S. Reinders&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/hbm.22730" target="_blank" rel="noopener">https://doi.org/10.1002/hbm.22730&lt;/a>&lt;/p></description></item><item><title>Cerebellar abnormalities in Huntington's disease: A role in motor and psychiatric impairment?</title><link>https://manifold.cs.ucl.ac.uk/publication/cerebellar-abnormalities-in-huntington-s-disease-a-role-in-motor-and-psychiatric-impairment/</link><pubDate>Wed, 01 Jan 2014 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/cerebellar-abnormalities-in-huntington-s-disease-a-role-in-motor-and-psychiatric-impairment/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Elin M. Rees, Ruth Farmer, admin, Salman Haider, Alexandra Durr, Bernhard Landwehrmeyer, Rachael I. Scahill, Sarah J. Tabrizi, Nicola Z. Hobbs&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1002/mds.25984" target="_blank" rel="noopener">https://doi.org/10.1002/mds.25984&lt;/a>&lt;/p></description></item><item><title>Inconsistent emotion recognition deficits across stimulus modalities in Huntington׳s disease</title><link>https://manifold.cs.ucl.ac.uk/publication/inconsistent-emotion-recognition-deficits-across-stimulus-modalities-in-huntington-s-disease/</link><pubDate>Wed, 01 Jan 2014 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/inconsistent-emotion-recognition-deficits-across-stimulus-modalities-in-huntington-s-disease/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Elin M. Rees, Ruth Farmer, admin, Susie M.D. Henley, Reiner Sprengelmeyer, Chris Frost, Rachael I. Scahill, Nicola Z. Hobbs, Sarah J. Tabrizi&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.neuropsychologia.2014.09.023" target="_blank" rel="noopener">https://doi.org/10.1016/j.neuropsychologia.2014.09.023&lt;/a>&lt;/p></description></item><item><title>Body mass index, but not FTO genotype or major depressive disorder, influences brain structure</title><link>https://manifold.cs.ucl.ac.uk/publication/body-mass-index-but-not-fto-genotype-or-major-depressive-disorder-influences-brain-structure/</link><pubDate>Tue, 01 Jan 2013 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/body-mass-index-but-not-fto-genotype-or-major-depressive-disorder-influences-brain-structure/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin, C.P. Boyle, A. Simmons, S. Cohen-Woods, M. Rivera, P. McGuffin, P.M. Thompson, C.H.Y. Fu&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.neuroscience.2013.07.015" target="_blank" rel="noopener">https://doi.org/10.1016/j.neuroscience.2013.07.015&lt;/a>&lt;/p></description></item><item><title>Evaluating multicenter DTI data in Huntington's disease on site specific effects: An ex post facto approach</title><link>https://manifold.cs.ucl.ac.uk/publication/evaluating-multicenter-dti-data-in-huntington-s-disease-on-site-specific-effects-an-ex-post-facto-approach/</link><pubDate>Tue, 01 Jan 2013 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/evaluating-multicenter-dti-data-in-huntington-s-disease-on-site-specific-effects-an-ex-post-facto-approach/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Hans-Peter Müller, Georg Grön, Reiner Sprengelmeyer, Jan Kassubek, Albert C. Ludolph, Nicola Hobbs, admin, Raymund A.C. Roos, Alexandra Duerr, Sarah J. Tabrizi, G. Bernhard Landwehrmeyer, Sigurd D. Süssmuth&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.nicl.2012.12.005" target="_blank" rel="noopener">https://doi.org/10.1016/j.nicl.2012.12.005&lt;/a>&lt;/p></description></item><item><title>Evaluation of multi-modal, multi-site neuroimaging measures in Huntington's disease: Baseline results from the PADDINGTON study</title><link>https://manifold.cs.ucl.ac.uk/publication/evaluation-of-multi-modal-multi-site-neuroimaging-measures-in-huntington-s-disease-baseline-results-from-the-paddington-study/</link><pubDate>Tue, 01 Jan 2013 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/evaluation-of-multi-modal-multi-site-neuroimaging-measures-in-huntington-s-disease-baseline-results-from-the-paddington-study/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Nicola Z. Hobbs, admin, Ruth E. Farmer, Elin M. Rees, Helen E. Crawford, Ian B. Malone, Raymund A.C. Roos, Reiner Sprengelmeyer, Alexandra Durr, Bernhard Landwehrmeyer, Rachael I. Scahill, Sarah J. Tabrizi, Chris Frost&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.nicl.2012.12.001" target="_blank" rel="noopener">https://doi.org/10.1016/j.nicl.2012.12.001&lt;/a>&lt;/p></description></item><item><title>Modulation of amygdala response and connectivity in depression by serotonin transporter polymorphism and diagnosis</title><link>https://manifold.cs.ucl.ac.uk/publication/modulation-of-amygdala-response-and-connectivity-in-depression-by-serotonin-transporter-polymorphism-and-diagnosis/</link><pubDate>Tue, 01 Jan 2013 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/modulation-of-amygdala-response-and-connectivity-in-depression-by-serotonin-transporter-polymorphism-and-diagnosis/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Sergi G. Costafreda, Peter McCann, Pascal Saker, admin, Sarah Cohen-Woods, Anne E. Farmer, Katherine J. Aitchison, Peter McGuffin, Cynthia H.Y. Fu&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.jad.2013.02.028" target="_blank" rel="noopener">https://doi.org/10.1016/j.jad.2013.02.028&lt;/a>&lt;/p></description></item><item><title>The neuroanatomy of subthreshold depressive symptoms in Huntington's disease: a combined diffusion tensor imaging (DTI) and voxel-based morphometry (VBM) study</title><link>https://manifold.cs.ucl.ac.uk/publication/the-neuroanatomy-of-subthreshold-depressive-symptoms-in-huntington-s-disease-a-combined-diffusion-tensor-imaging-dti-and-voxel-based-morphometry-vbm-study/</link><pubDate>Tue, 01 Jan 2013 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/the-neuroanatomy-of-subthreshold-depressive-symptoms-in-huntington-s-disease-a-combined-diffusion-tensor-imaging-dti-and-voxel-based-morphometry-vbm-study/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> R. Sprengelmeyer, M. Orth, H.-P. Müller, R. C. Wolf, G. Grön, M. S. Depping, J. Kassubek, D. Justo, E. M. Rees, S. Haider, J. H. Cole, N. Z. Hobbs, R. A. C. Roos, A. Dürr, S. J. Tabrizi, S. D. Süssmuth, G. B. Landwehrmeyer&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1017/s003329171300247x" target="_blank" rel="noopener">https://doi.org/10.1017/s003329171300247x&lt;/a>&lt;/p></description></item><item><title>White matter abnormalities and illness severity in major depressive disorder</title><link>https://manifold.cs.ucl.ac.uk/publication/white-matter-abnormalities-and-illness-severity-in-major-depressive-disorder/</link><pubDate>Sun, 01 Jan 2012 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/white-matter-abnormalities-and-illness-severity-in-major-depressive-disorder/</guid><description/></item><item><title>Hippocampal atrophy in first episode depression: A meta-analysis of magnetic resonance imaging studies</title><link>https://manifold.cs.ucl.ac.uk/publication/hippocampal-atrophy-in-first-episode-depression-a-meta-analysis-of-magnetic-resonance-imaging-studies/</link><pubDate>Sat, 01 Jan 2011 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/hippocampal-atrophy-in-first-episode-depression-a-meta-analysis-of-magnetic-resonance-imaging-studies/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin, Sergi G. Costafreda, Peter McGuffin, Cynthia H.Y. Fu&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.jad.2011.05.057" target="_blank" rel="noopener">https://doi.org/10.1016/j.jad.2011.05.057&lt;/a>&lt;/p></description></item><item><title>No effect of 5HTTLPR or BDNF Val66Met polymorphism on hippocampal morphology in major depression</title><link>https://manifold.cs.ucl.ac.uk/publication/no-effect-of-5httlpr-or-bdnf-val66met-polymorphism-on-hippocampal-morphology-in-major-depression/</link><pubDate>Sat, 01 Jan 2011 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/no-effect-of-5httlpr-or-bdnf-val66met-polymorphism-on-hippocampal-morphology-in-major-depression/</guid><description/></item><item><title>Summaries from the XVIII World Congress of Psychiatric Genetics, Athens, Greece, 3–7 October 2010</title><link>https://manifold.cs.ucl.ac.uk/publication/summaries-from-the-xviii-world-congress-of-psychiatric-genetics-athens-greece-3-7-october-2010/</link><pubDate>Sat, 01 Jan 2011 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/summaries-from-the-xviii-world-congress-of-psychiatric-genetics-athens-greece-3-7-october-2010/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> Sarah E. Bergen, Yatan Pal Singh Balhara, Andrea Christoforou, admin, Franziska Degenhardt, Emma Dempster, Mar Fatjó-Vilas, Yara Khedr, Lorna M. Lopez, Laura Lysenko, Lauren M. McGrath, Thomas W. Mühleisen, Fernando S. Neves, Charlotte Nymberg, Uzoezi Ozomaro, Karin J.H. Verweij, Aristotle N. Voineskos, Clement C. Zai, Anne O&amp;rsquo;Shea, Lynn E. DeLisi&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1097/ypg.0b013e3283469aa9" target="_blank" rel="noopener">https://doi.org/10.1097/ypg.0b013e3283469aa9&lt;/a>&lt;/p></description></item><item><title>Selected summaries from the XVII World Congress of Psychiatric Genetics, San Diego, California, USA, 4–8 November 2009</title><link>https://manifold.cs.ucl.ac.uk/publication/selected-summaries-from-the-xvii-world-congress-of-psychiatric-genetics-san-diego-california-usa-4-8-november-2009/</link><pubDate>Fri, 01 Jan 2010 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/selected-summaries-from-the-xvii-world-congress-of-psychiatric-genetics-san-diego-california-usa-4-8-november-2009/</guid><description/></item><item><title>Subregional hippocampal deformations in major depressive disorder</title><link>https://manifold.cs.ucl.ac.uk/publication/subregional-hippocampal-deformations-in-major-depressive-disorder/</link><pubDate>Fri, 01 Jan 2010 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/subregional-hippocampal-deformations-in-major-depressive-disorder/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> James H. Cole, Arthur W. Toga, Cornelius Hojatkashani, Paul Thompson, Sergi G. Costafreda, Anthony J. Cleare, Steven C.R. Williams, Edward T. Bullmore, Jan L. Scott, Martina T. Mitterschiffthaler&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1016/j.jad.2010.03.004" target="_blank" rel="noopener">https://doi.org/10.1016/j.jad.2010.03.004&lt;/a>&lt;/p></description></item><item><title>Genetic Overlap Between Measures of Hyperactivity/Inattention and Mood in Children and Adolescents</title><link>https://manifold.cs.ucl.ac.uk/publication/genetic-overlap-between-measures-of-hyperactivity-inattention-and-mood-in-children-and-adolescents/</link><pubDate>Thu, 01 Jan 2009 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/genetic-overlap-between-measures-of-hyperactivity-inattention-and-mood-in-children-and-adolescents/</guid><description>&lt;p>&lt;strong>Authors:&lt;/strong> admin, Harriet A. Ball, Neilson C. Martin, Jane Scourfield, Peter Mcguffin&lt;/p>
&lt;p>&lt;strong>DOI:&lt;/strong> &lt;a href="https://doi.org/10.1097/chi.0b013e3181b7666e" target="_blank" rel="noopener">https://doi.org/10.1097/chi.0b013e3181b7666e&lt;/a>&lt;/p></description></item><item><title>The classification of depression: are we still confused?</title><link>https://manifold.cs.ucl.ac.uk/publication/the-classification-of-depression-are-we-still-confused/</link><pubDate>Tue, 01 Jan 2008 00:00:00 +0000</pubDate><guid>https://manifold.cs.ucl.ac.uk/publication/the-classification-of-depression-are-we-still-confused/</guid><description/></item></channel></rss>