bioRxiv · 10.64898/2026.08.26.747192
Entorhinal grid coding as a functional link between tau accumulation and episodic memory in human aging
Abstract
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-cell computations in the entorhinal cortex, which provide scaffolds for organizing experiences into episodic memories, offer one candidate mechanism. Here, we combined virtual-reality functional MRI, multivariate analysis, tau PET, and delayed word-list recall in cognitively normal older adults to test whether tau-related alterations in entorhinal coding are associated with worse episodic memory. Weaker left entorhinal grid-cell-like signal was associated with poorer memory performance, and individuals with higher left entorhinal tau burden showed weaker grid-cell-like signal. This association was specific to the canonical six-fold signal and was not explained by entorhinal volume, mean diffusivity, or intracortical myelination. A cross-sectional Bayesian mediation analysis further demonstrated that bilateral medial temporal tau burden is related to memory indirectly through left entorhinal grid-cell-like signal. Together, these findings provide evidence that entorhinal grid codes may constitute a functional pathway linking tau accumulation to memory variability in normal aging.
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Segen, V., Belge Bernard, T., Callau Navarro, G., Bahrd, P., Behrenbruch, N., Schumann-Werner, B., Schwarck, S., Garcia-Garcia, B., Barthel, H., Sabri, O., Kreissl, M. C., Duzel, E., Maass, A., Wolbers, T.. 2026-09-01. Entorhinal grid coding as a functional link between tau accumulation and episodic memory in human aging. https://doi.org/10.64898/2026.08.26.747192
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