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Journal Article

Age and sex effects on advanced white matter microstructure measures in 15,628 older adults: A UK biobank study

Katherine E. Lawrence; Leila Nabulsi; Vigneshwaran Santhalingam; Zvart Abaryan; Julio E. Villalon-Reina; Talia M. Nir; Iyad Ba Gari; Alyssa H. Zhu; Elizabeth Haddad; Alexandra M. Muir; Emily Laltoo; Neda Jahanshad; Paul M. Thompson
Brain Imaging and Behavior · Vol. 15, Issue 6 · pp. 2813-2823 · 2021

Abstract

A comprehensive characterization of the brain’s white matter is critical for improving our understanding of healthy and diseased aging. Here we used diffusion-weighted magnetic resonance imaging (dMRI) to estimate age and sex effects on white matter microstructure in a cross-sectional sample of 15,628 adults aged 45–80 years old (47.6% male, 52.4% female). Microstructure was assessed using the following four models: a conventional single-shell model, diffusion tensor imaging (DTI); a more advanced single-shell model, the tensor distribution function (TDF); an advanced multi-shell model, neurite orientation dispersion and density imaging (NODDI); and another advanced multi-shell model, mean apparent propagator MRI (MAPMRI). Age was modeled using a data-driven statistical approach, and normative centile curves were created to provide sex-stratified white matter reference charts. Participant age and sex substantially impacted many aspects of white matter microstructure across the brain, with the advanced dMRI models TDF and NODDI detecting such effects the most sensitively. These findings and the normative reference curves provide an important foundation for the study of healthy and diseased brain aging.

Bibliographic Information

JournalBrain Imaging and Behavior
PublisherSpringer
Publication Date2021-12-01
Publication Year2021
Volume15
Issue6
Pages2813-2823
Document TypeJournal Article
eISSN1931-7565
DOI10.1007/s11682-021-00548-y

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NARA Access Coverage2007-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11682
Publisher PageOpen Publisher Page
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