Learning via mechanosensitivity and activity in cytoskeletal networks
Learning via mechanosensitivity and activity in cytoskeletal networks
In this work we show how a network inspired by a coarse-grained description of actomyosin cytoskeleton can learn - in a contrastive learning framework - from environmental perturbations if it is endowed with mechanosensitive proteins and motors. Our work is a proof of principle for how force-sensitive proteins and molecular motors can form the basis of a general strategy to learn in biological systems. Our work identifies a minimal biologically plausible learning mechanism and also explores its implications for commonly occuring phenomenolgy such as adaptation and homeostatis.
Deb S. Banerjee、Martin J. Falk、Margaret L Gardel、Aleksandra M. Walczak、Thierry Mora、Suriyanarayanan Vaikuntanathan
细胞生物学生物物理学
Deb S. Banerjee,Martin J. Falk,Margaret L Gardel,Aleksandra M. Walczak,Thierry Mora,Suriyanarayanan Vaikuntanathan.Learning via mechanosensitivity and activity in cytoskeletal networks[EB/OL].(2025-04-21)[2025-05-05].https://arxiv.org/abs/2504.15107.点此复制
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