作者
Rene Labounek, Monica T Bondy, Amy L Paulson, Sandrine Bedard, Mihael Abramovic, Eva Alonso-Ortiz, Nicole T Atcheson, Laura R Barlow, Robert L Barry, Markus Barth, Marco Battiston, Christian Buchel, Matthew D Budde, Virginie Callot, Anna Combes, Benjamin De Leener, Maxime Descoteaux, Paulo Loureiro de Sousa, Marek Dostal, Julien Doyon, Adam V Dvorak, Falk Eippert, Karla R Epperson, Kevin S Epperson, Patrick Freund, Jurgen Finsterbusch, Alexandru Foias, Michela Fratini, Issei Fukunaga, Claudia AM Gandini Wheeler-Kingshott, GianCarlo Germani, Guillaume Gilbert, Federico Giove, Francesco Grussu, Akifumi Hagiwara, Pierre-Gilles Henry, Tomas Horak, Masaaki Hori, James M Joers, Kouhei Kamiya, Haleh Karbasforoushan, Milos Kerkovsky, Ali Khatibi, Joo-won Kim, Nawal Kinany, Hagen Kitzler, Shannon Kolind, Yazhuo Kong, Petr Kudlicka, Paul Kuntke, Nyoman D Kurniawan, Slawomir Kusmia, Maria Marcella Lagana, Cornelia Laule, Christine SW Law, Tobias Leutritz, Yaou Liu, Sara Llufriu, Sean Mackey, Allan R Martin, Eloy Martinez-Heras, Loan Mattera, Kristin P O'Grady, Nico Papinutto, Daniel Papp, Deborah Pareto, Todd B Parrish, Anna Pichiecchio, Ferran Prados, Alex Rovira, Marc J Ruitenberg, Rebecca S Samson, Giovanni Savini, Maryam Seif, Alan C Seifert, Alex K Smith, Seth A Smith, Zachary A Smith, Elisabeth Solana, Yuichi Suzuki, George W Tackley, Alexandra Tinnermann, Jan Valosek, Dimitri Van De Ville, Marios C Yiannakas, Kenneth A Weber, Nikolaus Weiskopf, Richard G Wise, Patrik O Wyss, Junqian Xu, Julien Cohen-Adad, Christophe Lenglet, Igor Nestrasil
发表日期
2024
期刊
bioRxiv
页码范围
2024.04. 29.591421
出版商
Cold Spring Harbor Laboratory
简介
Clinical research emphasizes the implementation of rigorous and reproducible study designs that rely on between-group matching or controlling for sources of biological variation such as subject's sex and age. However, corrections for body size are mostly lacking in clinical neuroimaging designs. This study investigates the importance of body size parameters in their relationship with spinal cord (SC) and brain magnetic resonance imaging (MRI) metrics. Data were derived from a cosmopolitan population of 267 healthy human adults (age 30.1+-6.6 years old, 125 females). We show that body height correlated strongly or moderately with brain gray matter (GM) volume, cortical GM volume, total cerebellar volume, brainstem volume, and cross-sectional area (CSA) of cervical SC white matter (CSA-WM; 0.44≤r≤0.62). In comparison, age correlated weakly with cortical GM volume, precentral GM volume, and cortical thickness (-0.21≥r≥-0.27). Body weight correlated weakly with magnetization transfer ratio in the SC WM, dorsal columns, and lateral corticospinal tracts (-0.20≥r≥-0.23). Body weight further correlated weakly with the mean diffusivity derived from diffusion tensor imaging (DTI) in SC WM (r=-0.20) and dorsal columns (-0.21), but only in males. CSA-WM correlated strongly or moderately with brain volumes (0.39≤r≤0.64), and weakly with precentral gyrus thickness and DTI-based fractional anisotropy in SC dorsal columns and SC lateral corticospinal tracts (-0.22≥r≥-0.25). Linear mixture of sex and age explained 26+-10% of data variance in brain volumetry and SC CSA. The amount of explained variance increased at 33+-11% when …