Differential associations of age and AD pathology with mesoscale MTL-connectivity patterns show differential associations of age and AD pathology with mesoscale MTL-connectivity patterns, which may support memory function in the short term while contributing to subsequent memory decline.
Abstract
The medial temporal lobe (MTL) is crucial for episodic memory. Tau pathology is a hallmark of Alzheimer’s disease (AD) and accumulates in layer-specific patterns in the MTL during aging. It is, however, unclear whether early AD pathology relates to mesoscale network signatures distinct from non-pathological aging. To address this gap, we acquired 7 Tesla submillimeter-resolution resting-state fMRI, plasma-based AD biomarkers, glial fibrillary acidic protein (GFAP) levels, APOE genotype, regional [18F]PI-2620 tau PET burden, and longitudinal episodic memory data in 75 cognitively unimpaired older adults. Older age was associated with lower perirhinal– hippocampal connectivity and lower network segregation, whereas higher plasma-based AD pathology was associated with higher perirhinal–hippocampal connectivity. Furthermore, temporal-lobe tau burden was related to altered connectivity patterns in tau-vulnerable MTL subfields and layers, dependent on GFAP levels. Retrosplenial tau burden was associated with higher hippocampal-retrosplenial connectivity consistent with tau spread along canonical hippocampal output pathways. Finally, higher connectivity within the hippocampus attenuated the negative association between temporal-lobe tau burden and memory performance but predicted unfavorable memory trajectories. Our findings show differential associations of age and AD pathology with mesoscale MTL-connectivity patterns. Importantly, increased hippocampal connectivity may support memory function in the short term while contributing to subsequent memory decline.
Lower static connectivity across multiple large-scale networks was associated with faster longitudinal tau accumulation and, selectively in individuals with elevated amyloid burden, with accelerated cognitive decline, and these associations were not observed for time-varying connectivity.
Mohammadali Javanray, Jonathan Gallego-Rudolf, Y. Yakoub et al.· Research Square· 0 citations
Higher plasma YKL‐40 was associated with greater white matter hyperintensity (WMH), whereas higher plasma GFAP was related to increased 18F‐florbetapir (FBP) standardized uptake value ratio (SUVR) and higher plasma p‐tau217 was associated with reduced MTL cortical thickness and hippocampal volume.
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Episodic memory decline is a common feature of cognitively normal aging, but its extent varies markedly across individuals. Although entorhinal tau pathology is thought to be a key contributor to episodic memory impairment, the neural mechanisms linking early tau accumulation to memory differences remain unclear. Grid-...
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In this large longitudinal sample of asymptomatic individuals, the Aβ-dominant biomarker component showed the strongest association with longitudinal GM atrophy and cognitive decline, beyond the effects of tau pathophysiology and neuroaxonal injury.
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BACKGROUND
Mild cognitive impairment (MCI) is associated with structural abnormalities in regions vulnerable to Alzheimer's disease, but the relative contributions of medial temporal, posterior midline, and association cortices remain unclear. We compared regional gray matter volumes between individuals with MCI and co...
Xiao-Ming Yang, Jian Lyu, Ju-Bo Wang et al.· International Journal of Neu...· 0 citations
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