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Multiple DTI index analysis in normal aging, amnestic MCI and AD. Relationship with neuropsychological performance
Beatriz Bosch1, Eider M Arenaza-Urquijo, Lorena Rami
1Alzheimer's disease and other Cognitive Disorders Unit, Neurology Service, Hospital Clínic de Barcelona, Catalonia, Spain.
Abstract:
White matter (WM) damage has been reported in Alzheimer's Disease (AD) and Mild Cognitive Impairment (MCI) in diffusion tensor imaging (DTI) studies. It is, however, unknown how the investigation of multiple tensor indexes in the same patients, can differentiate them from normal aging or relate to patients cognition. Forty-six individuals (15 healthy, 16 a-MCI and 15 AD) were included. Voxel-based tract based spatial-statistics (TBSS) was used to obtain whole-brain maps of main WM bundles for fractional anisotropy (FA), radial diffusivity (DR), axial diffusivity (DA) and mean diffusivity (MD). FA reductions were evidenced among AD patients with posterior predominance. A-MCI patients displayed reduced mean FA in these critical regions, compared to healthy elders. MD increases were widespread in both groups of patients. Interestingly, a-MCI patients exhibited DR increases in overlapping areas of FA shrinkages in AD, whereas DA increases were only observed in AD. Gray matter atrophy explained most DTI differences, except those regarding MD in both groups as well as DR increases in posterior associative pathways among a-MCI cases. FA values were the only DTI measure significantly related to memory performance among patients. Present findings suggest that most DTI-derived changes in AD and a-MCI are largely secondary to gray matter atrophy. Notably however, specific DR signal increases in posterior parts of the inferior fronto-occipital and longitudinal fasciculi may reflect early WM compromise in preclinical dementia, which is independent of atrophy. Finally, global measures of integrity, particularly orientation coherence (FA) of diffusion, appear to be more closely related to the cognitive profile of our patients than indexes reflecting water movement parallel (DA) and perpendicular (DR) to the primary diffusion direction.
Insights
White matter damage in Alzheimer's Disease (AD) and Mild Cognitive Impairment (MCI) is often linked to gray matter atrophy. However, specific radial diffusivity increases may indicate early white matter changes independent of atrophy.
Area of Science:
- Neuroimaging
- Neurodegenerative Diseases
- White Matter Integrity
Background:
- White matter (WM) damage is a known feature in Alzheimer's Disease (AD) and Mild Cognitive Impairment (MCI).
- Previous diffusion tensor imaging (DTI) studies have indicated WM alterations, but a comprehensive analysis differentiating these conditions and relating DTI metrics to cognition is lacking.
Purpose of the Study:
- To investigate how multiple DTI tensor indices differentiate AD and MCI from normal aging.
- To explore the relationship between DTI metrics and cognitive function in these patient groups.
Main Methods:
- Forty-six participants (15 healthy, 16 MCI, 15 AD) underwent DTI scans.
- Voxel-based tract-based spatial statistics (TBSS) was employed to analyze whole-brain WM bundles using fractional anisotropy (FA), radial diffusivity (DR), axial diffusivity (DA), and mean diffusivity (MD).
Main Results:
- AD patients showed posterior FA reductions; MCI patients had reduced FA in similar regions compared to controls.
- Widespread MD increases were observed in both MCI and AD groups.
- MCI patients exhibited DR increases in areas of FA shrinkage seen in AD, while DA increases were specific to AD. Gray matter atrophy explained most DTI differences, except for MD and posterior DR increases in MCI.
- Only FA values significantly correlated with memory performance.
Conclusions:
- Most DTI changes in AD and MCI appear secondary to gray matter atrophy.
- Specific DR increases in posterior WM pathways in MCI may represent early, atrophy-independent WM compromise.
- Global diffusion orientation coherence (FA) is more strongly associated with cognitive performance than diffusivity measures (DA, DR).
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