Microstructural white matter changes, not hippocampal atrophy, detect early amnestic mild cognitive impairment.
Alzheimer's disease (AD) is generally considered to be characterized by pathology in gray matter of the brain, but convergent evidence suggests that white matter degradation also plays a vital role in its pathogenesis. The evolution of white matter deterioration and its relationship with gray m...
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doaj-40affbe095a34cd2b36904a60b832bff2020-11-25T00:40:51ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0183e5888710.1371/journal.pone.0058887Microstructural white matter changes, not hippocampal atrophy, detect early amnestic mild cognitive impairment.Lin ZhuangPerminder S SachdevJulian N TrollorSimone ReppermundNicole A KochanHenry BrodatyWei WenAlzheimer's disease (AD) is generally considered to be characterized by pathology in gray matter of the brain, but convergent evidence suggests that white matter degradation also plays a vital role in its pathogenesis. The evolution of white matter deterioration and its relationship with gray matter atrophy remains elusive in amnestic mild cognitive impairment (aMCI), a prodromal stage of AD.We studied 155 cognitively normal (CN) and 27 'late' aMCI individuals with stable diagnosis over 2 years, and 39 'early' aMCI individuals who had converted from CN to aMCI at 2-year follow up. Diffusion tensor imaging (DTI) tractography was used to reconstruct six white matter tracts three limbic tracts critical for episodic memory function - the fornix, the parahippocampal cingulum, and the uncinate fasciculus; two cortico-cortical association fiber tracts - superior longitudinal fasciculus and inferior longitudinal fasciculus; and one projection fiber tract - corticospinal tract. Microstructural integrity as measured by fractional anisotropy (FA), mean diffusivity (MD), radial diffusivity (RD) and axial diffusivity (AxD) was assessed for these tracts.Compared with CN, late aMCI had lower white matter integrity in the fornix, the parahippocampal cingulum, and the uncinate fasciculus, while early aMCI showed white matter damage in the fornix. In addition, fornical measures were correlated with hippocampal atrophy in late aMCI, whereas abnormality of the fornix in early aMCI occurred in the absence of hippocampal atrophy and did not correlate with hippocampal volumes.Limbic white matter tracts are preferentially affected in the early stages of cognitive dysfunction. Microstructural degradation of the fornix preceding hippocampal atrophy may serve as a novel imaging marker for aMCI at an early stage.http://europepmc.org/articles/PMC3597581?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lin Zhuang Perminder S Sachdev Julian N Trollor Simone Reppermund Nicole A Kochan Henry Brodaty Wei Wen |
spellingShingle |
Lin Zhuang Perminder S Sachdev Julian N Trollor Simone Reppermund Nicole A Kochan Henry Brodaty Wei Wen Microstructural white matter changes, not hippocampal atrophy, detect early amnestic mild cognitive impairment. PLoS ONE |
author_facet |
Lin Zhuang Perminder S Sachdev Julian N Trollor Simone Reppermund Nicole A Kochan Henry Brodaty Wei Wen |
author_sort |
Lin Zhuang |
title |
Microstructural white matter changes, not hippocampal atrophy, detect early amnestic mild cognitive impairment. |
title_short |
Microstructural white matter changes, not hippocampal atrophy, detect early amnestic mild cognitive impairment. |
title_full |
Microstructural white matter changes, not hippocampal atrophy, detect early amnestic mild cognitive impairment. |
title_fullStr |
Microstructural white matter changes, not hippocampal atrophy, detect early amnestic mild cognitive impairment. |
title_full_unstemmed |
Microstructural white matter changes, not hippocampal atrophy, detect early amnestic mild cognitive impairment. |
title_sort |
microstructural white matter changes, not hippocampal atrophy, detect early amnestic mild cognitive impairment. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2013-01-01 |
description |
Alzheimer's disease (AD) is generally considered to be characterized by pathology in gray matter of the brain, but convergent evidence suggests that white matter degradation also plays a vital role in its pathogenesis. The evolution of white matter deterioration and its relationship with gray matter atrophy remains elusive in amnestic mild cognitive impairment (aMCI), a prodromal stage of AD.We studied 155 cognitively normal (CN) and 27 'late' aMCI individuals with stable diagnosis over 2 years, and 39 'early' aMCI individuals who had converted from CN to aMCI at 2-year follow up. Diffusion tensor imaging (DTI) tractography was used to reconstruct six white matter tracts three limbic tracts critical for episodic memory function - the fornix, the parahippocampal cingulum, and the uncinate fasciculus; two cortico-cortical association fiber tracts - superior longitudinal fasciculus and inferior longitudinal fasciculus; and one projection fiber tract - corticospinal tract. Microstructural integrity as measured by fractional anisotropy (FA), mean diffusivity (MD), radial diffusivity (RD) and axial diffusivity (AxD) was assessed for these tracts.Compared with CN, late aMCI had lower white matter integrity in the fornix, the parahippocampal cingulum, and the uncinate fasciculus, while early aMCI showed white matter damage in the fornix. In addition, fornical measures were correlated with hippocampal atrophy in late aMCI, whereas abnormality of the fornix in early aMCI occurred in the absence of hippocampal atrophy and did not correlate with hippocampal volumes.Limbic white matter tracts are preferentially affected in the early stages of cognitive dysfunction. Microstructural degradation of the fornix preceding hippocampal atrophy may serve as a novel imaging marker for aMCI at an early stage. |
url |
http://europepmc.org/articles/PMC3597581?pdf=render |
work_keys_str_mv |
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