Publication details

Body size and intracranial volume interact with the structure of the central nervous system: A multi-center in vivo neuroimaging study

Authors

LABOUNEK Rene BONDY Monica T PAULSON Amy L BEDARD Sandrine ABRAMOVIC Mihael ALONSO-ORTIZ Eva ATCHESON Nicole T BARLOW Laura R BARRY Robert L BARTH Markus BATTISTON Marco BUECHEL Christian BUDDE Matthew D CALLOT Virginie COMBES Anna BENJAMIN De Leener DESCOTEAUX Maxime LOUREIRO de Sousa Paulo DOSTÁL Marek DOYON Julien DVORAK Adam V EIPPERT Falk EPPERSON Karla R EPPERSON Kevin S FREUND Patrick FINSTERBUSCH Juergen FOIAS Alexandru FRATINI Michela FUKUNAGA Issei WHEELER-KINGSHOTT Claudia A M Gandini GERMANI GianCarlo GILBERT Guillaume GIOVE Federico GRUSSU Francesco HAGIWARA Akifumi HENRY Pierre-Gilles HORÁK Tomáš HORI Masaaki JOERS James M. KAMIYA Kouhei KARBASFOROUSHAN Haleh KEŘKOVSKÝ Miloš KHATIBI Ali KIM Joo-won KINANY Nawal KITZLER Hagen KOLIND Shannon KONG Yazhuo KUDLIČKA Petr KUNTKE Paul KURNIAWAN Nyoman D KUSMIA Slawomir LAGANA Maria Marcella LAULE Cornelia LAW Christine S W LEUTRITZ Tobias LIU Yaou LLUFRIU Sara MACKEY Sean MARTIN Allan R. MARTINEZ-HERAS Eloy MATTERA Loan O'GRADY Kristin P. PAPINUTTO Nico PAPP Daniel PARETO Deborah PARRISH Todd B. PICHIECCHIO Anna PRADOS Ferran ROVIRA Alex RUITENBERG Marc J. SAMSON Rebecca S. SAVINI Giovanni SEIF Maryam SEIFERT Alan C. SMITH Alex K. SMITH Seth A. SMITH Zachary A. SOLANA Elisabeth SUZUKI Yuichi TACKLEY George W. TINNERMANN Alexandra VALOSEK Jan VAN DE VILLE Dimitri YIANNAKAS Marios C. WEBER Kenneth A. II WEISKOPF Nikolaus WISE Richard G. WYSS Patrik O. XU Junqian COHEN-ADAD Julien LENGLET Christophe NESTRASIL Igor

Year of publication 2025
Type Peer-reviewed scientific article
Magazine / Source Imaging Neuroscience
MU Faculty or unit

Faculty of Medicine

Citation
web https://direct.mit.edu/imag/article/doi/10.1162/imag_a_00559/128821/Body-size-and-intracranial-volume-interact-with
Doi https://doi.org/10.1162/imag_a_00559
Keywords spinal cord; brain; body height and weight; intracranial volume; structural magnetic resonance imaging; in vivo human neuroimaging
Description 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 (i.e., height and weight) 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 correlates 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). Intracranial volume (ICV) correlates with body height (r = 0.46) and the brain volumes and CSA-WM (0.37 <= r <= 0.77). In comparison, age correlates with cortical GM volume, precentral GM volume, and cortical thickness (-0.21 >= r >= -0.27). Body weight correlates with magnetization transfer ratio in the SC WM, dorsal columns, and lateral corticospinal tracts (-0.20 >= r >= -0.23). Body weight further correlates 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 correlates with brain volumes (0.39 <= r <= 0.64), and 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 age, sex, or sex and age, explained 2 +/- 2%, 24 +/- 10%, or 26 +/- 10%, of data variance in brain volumetry and SC CSA. The amount of explained variance increased to 33 +/- 11%, 41 +/- 17%, or 46 +/- 17%, when body height, ICV, or body height and ICV were added into the mixture model. In females, the explained variances halved suggesting another unidentified biological factor(s) determining females' central nervous system (CNS) morphology. In conclusion, body size and ICV are significant biological variables. Along with sex and age, body size should therefore be included as a mandatory variable in the design of clinical neuroimaging studies examining SC and brain structure; and body size and ICV should be considered as covariates in statistical analyses. Normalization of different brain regions with ICV diminishes their correlations with body size, but simultaneously amplifies ICV-related variance (r = 0.72 +/- 0.07) and suppresses volume variance of the different brain regions (r = 0.12 +/- 0.19) in the normalized measurements.

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