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◇ bioRxiv2026-08-21· neuroscience

Mesoscale medial temporal lobe connectivity patterns relate to tau pathology and memory in older adults

L. Fischer, N. Vockert, J. Hoepker Fernandes, B. Garcia-Garcia, S. N. Roemer-Cassiano, N. Franzmeier, H. M. Gellersen, B. Schumann-Werner, N. Behrenbruch, S. Schwarck, E. N. Molloy, G. Behnisch, C. Seidenbecher, B. H. Schott, B. Morgado, H. Esselmann, J. Wiltfang, H. Barthel, O. Sabri, M. C. Kreissl, E. Duezel, S. Schreiber, E. Kuehn, A. Maass

原始摘要(英文原文)· Original 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.
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