吸引子
神经科学
下丘脑
侵略
功能(生物学)
直线(几何图形)
人口
损失函数
物理
心理学
生物
表型
数学
细胞生物学
基因
医学
发展心理学
遗传学
数学分析
环境卫生
几何学
作者
Aditya G. Nair,Tomomi Karigo,Bin Yang,Scott W Linderman,David E. Anderson,Ann R. Kennedy
标识
DOI:10.1101/2022.04.19.488776
摘要
Summary The hypothalamus plays a key role in regulating innate behaviors. It is widely believed to function as a system of ‘labeled lines’, containing behavior-specific neurons with characteristic transcriptomic and connectomic profiles. This view however fails to explain why, although activation of estrogen receptor-1 (Esr1) expressing neurons in the ventromedial hypothalamus (VMHvl) promotes aggression, few VMHvl neurons are tuned to attack. To address this paradox, we adopted an unsupervised dynamical systems framework to analyze population activity among VMHvl Esr1 neurons during aggression. We discovered that this activity contains an “integration” dimension exhibiting slow-ramping dynamics and persistent activity that correlates with escalating aggressiveness. These dynamics are implemented as an approximate line attractor in state space. Our analysis suggests a function for VMHvl to encode the intensity of behavior-relevant motive states using line attractors. This view reconciles observational and perturbational studies of VMHvl, and reveals a new mode of neural computation in the hypothalamus.
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