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Article

Cellular basis for cortical network aging in primates

2025-07-12

Abstract excerpt

Large-scale brain networks are vulnerable to change with aging and become dysregulated. How these networks are altered at the cellular level remains unclear owing to challenges of bridging data across scales. Here, we integrate in vivo cortical similarity networks with whole brain spatial transcriptomics to characterize the aging brain in a lifespan cohort of macaques (N=64, ages 1–26 years). Deep-layer excitator...

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Identifiers and source

Literature Corpus work
22552eee-faab-5b1c-9dc8-499a66feaddb
DOI
10.1101/2025.07.08.663725
Open publication

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Cellular basis for cortical network aging in primatesDOI 10.1101/2025.07.08.663725
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