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Postmortem MRI: a novel window into the neurobiology of late life cognitive decline
Robert J Dawe1, Lei Yu2, Sue E Leurgans2
1Rush Alzheimer's Disease Center, Rush University Medical Center, Chicago, IL, USA; Department of Diagnostic Radiology and Nuclear Medicine, Rush University Medical Center, Chicago, IL, USA.
Abstract:
This study tested the hypothesis that indices of brain tissue integrity derived from postmortem magnetic resonance imaging (MRI) are associated with late life decline in cognitive function and dementia, over and above contributions from common age-related neuropathologies. Cerebral hemispheres were obtained from 425 deceased older adults who had undergone 2 or more annual cognitive assessments, which included clinical diagnosis of dementia. Specimens underwent MRI to produce maps of transverse relaxation rate, R2. Voxelwise regression revealed brain regions where R2 was associated with cognitive decline. We then used random effects models to quantify the extent to which R2 accounted for variation in decline, after adjustment for demographics and neuropathologic indices of the 3 most common causes of dementia: Alzheimer's disease, cerebrovascular disease, and Lewy body disease. We additionally tested whether R2 was tied to greater likelihood of clinical diagnosis of Alzheimer's dementia using logistic regression models. During an average of 8.1 years, the mean rate of decline in global cognitive function was 0.13 unit per year (p < 0.0001). The tissue alteration most commonly related to decline was R2 slowing in white matter. Each unit decrease in R2 was associated with an additional 0.053-unit per year steepening of the rate of global cognitive decline (p < 0.001). Furthermore, R2 accounted for 8.4% of the variance in rate of global cognitive decline, above and beyond the 26.5% accounted for by demographics and neuropathologic indices, and 7.1%-11.2% of the variance of the decline rates in episodic, semantic, and working memory and perceptual speed. Alterations in R2 were also related to an increased odds of clinical diagnosis of Alzheimer's dementia (odds ratio = 2.000, 95% confidence interval 1.600, 2.604). Therefore, postmortem MRI indices of brain tissue integrity, particularly in white matter, are useful for elucidating the basis of late life cognitive impairment in older adults and complement traditional indices of neuropathology derived using histopathologic methods.
Insights
Postmortem magnetic resonance imaging (MRI) reveals brain tissue integrity changes, particularly in white matter, are linked to cognitive decline and dementia risk in older adults. These findings complement traditional neuropathology assessments.
Area of Science:
- Neuroimaging
- Neuropathology
- Cognitive Neuroscience
Background:
- Late-life cognitive decline and dementia are significant public health concerns.
- Traditional neuropathological assessments identify key contributors like Alzheimer's disease, cerebrovascular disease, and Lewy body disease.
- The role of general brain tissue integrity, independent of specific pathologies, in cognitive aging requires further elucidation.
Purpose of the Study:
- To test if postmortem magnetic resonance imaging (MRI) indices of brain tissue integrity correlate with late-life cognitive decline and dementia.
- To determine if these MRI indices explain cognitive decline beyond established neuropathological factors.
- To investigate the association between MRI-derived tissue integrity and the clinical diagnosis of Alzheimer's dementia.
Main Methods:
- Utilized postmortem MRI to generate transverse relaxation rate (R2) maps from 425 deceased older adults with longitudinal cognitive data.
- Employed voxelwise regression to identify brain regions where R2 was associated with cognitive decline.
- Applied random effects and logistic regression models to assess R2's contribution to cognitive decline variance and dementia diagnosis, adjusting for demographics and neuropathology.
Main Results:
- Slowing of R2 in white matter was the most frequent tissue alteration linked to cognitive decline.
- Each unit decrease in R2 correlated with a steeper rate of global cognitive decline (0.053 unit/year).
- R2 explained 8.4% of cognitive decline variance, independent of demographics and neuropathology, and was associated with increased odds of Alzheimer's dementia diagnosis.
Conclusions:
- Postmortem MRI indices of brain tissue integrity, especially in white matter, are valuable for understanding cognitive impairment in older adults.
- These neuroimaging markers provide complementary information to traditional histopathological methods in dementia research.
- Brain tissue integrity, as measured by R2, is a significant factor in late-life cognitive trajectories and dementia risk.
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