4.7 Article

Orientational changes of white matter fibers in Alzheimer's disease and amnestic mild cognitive impairment

期刊

HUMAN BRAIN MAPPING
卷 42, 期 16, 页码 5397-5408

出版社

WILEY
DOI: 10.1002/hbm.25628

关键词

Alzheimer's disease; amnestic mild cognitive impairment; geometric microstructure; orientation change; white matter

资金

  1. National Natural Science Foundation of China [81871434, 61971017]
  2. National Key Research and Development Program of China [2019YFC0118602]
  3. Beijing Natural Science Foundation [Z200016]

向作者/读者索取更多资源

White matter abnormalities, such as orientational changes in specific fiber tracts, were found to be prominent in Alzheimer's disease patients compared to cognitively normal individuals. In contrast, individuals with amnestic mild cognitive impairment showed subtle changes in specific fiber tracts that were associated with cognitive performance. These findings suggest that white matter fiber orientation information could offer valuable insights into the pathology of neurodegenerative diseases like Alzheimer's disease.
White matter abnormalities represent early neuropathological events in neurodegenerative diseases such as Alzheimer's disease (AD), investigating these white matter alterations would likely provide valuable insights into pathological changes over the course of AD. Using a novel mathematical framework called Director Field Analysis (DFA), we investigated the geometric microstructural properties (i.e., splay, bend, twist, and total distortion) in the orientation of white matter fibers in AD, amnestic mild cognitive impairment (aMCI), and cognitively normal (CN) individuals from the Alzheimer's Disease Neuroimaging Initiative 2 database. Results revealed that AD patients had extensive orientational changes in the bilateral anterior thalamic radiation, corticospinal tract, inferior and superior longitudinal fasciculus, inferior fronto-occipital fasciculus, and uncinate fasciculus in comparison with CN. We postulate that these orientational changes of white matter fibers may be partially caused by the expansion of lateral ventricle, white matter atrophy, and gray matter atrophy in AD. In contrast, aMCI individuals showed subtle orientational changes in the left inferior longitudinal fasciculus and right uncinate fasciculus, which showed a significant association with the cognitive performance, suggesting that these regions may be preferential vulnerable to breakdown by neurodegenerative brain disorders, thereby resulting in the patients' cognitive impairment. To our knowledge, this article is the first to examine geometric microstructural changes in the orientation of white matter fibers in AD and aMCI. Our findings demonstrate that the orientational information of white matter fibers could provide novel insight into the underlying biological and pathological changes in AD and aMCI.

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