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乳头体上核调节运动和海马活动
作者:小柯机器人 发布时间:2021/12/19 23:54:56

美国斯坦福大学Jordan S. Farrell等研究人员发现,乳头体上核调节运动和海马活动。2021年12月16日,国际知名学术期刊《科学》发表了这一成果。

研究人员确定了啮齿动物下丘脑上核(SuM)中与未来运动速度高度相关的神经元,并在激活时可靠地驱动运动。在表达Tac1(物质P)的(SuMTac1+)神经元中特别确定了强有力的运动控制,这些神经元的激活选择性地控制了速度调节的海马神经元活动。相比之下,Tac1缺陷(SuMTac1-)的细胞对运动的调节很弱,但能有效地控制海马神经元的脉冲时间,并足以诱导局部网络振荡。这些发现强调,SuM不仅调节基本的运动活动,而且还选择性地塑造海马的神经活动,其方式可能支持空间导航。
 
据悉,运动速度是用于计算个体位置的基本输入,但这一信号来自哪里还不清楚。
 
附:英文原文

Title: Supramammillary regulation of locomotion and hippocampal activity

Author: Jordan S. Farrell, Matthew Lovett-Barron, Peter M. Klein, Fraser T. Sparks, Tilo Gschwind, Anna L. Ortiz, Biafra Ahanonu, Susanna Bradbury, Satoshi Terada, Mikko Oijala, Ernie Hwaun, Barna Dudok, Gergely Szabo, Mark J. Schnitzer, Karl Deisseroth, Attila Losonczy, Ivan Soltesz

Issue&Volume: 2021-12-17

Abstract: Locomotor speed is a basic input used to calculate one’s position, but where this signal comes from is unclear. We identified neurons in the supramammillary nucleus (SuM) of the rodent hypothalamus that were highly correlated with future locomotor speed and reliably drove locomotion when activated. Robust locomotion control was specifically identified in Tac1 (substance P)–expressing (SuMTac1+) neurons, the activation of which selectively controlled the activity of speed-modulated hippocampal neurons. By contrast, Tac1-deficient (SuMTac1) cells weakly regulated locomotion but potently controlled the spike timing of hippocampal neurons and were sufficient to entrain local network oscillations. These findings emphasize that the SuM not only regulates basic locomotor activity but also selectively shapes hippocampal neural activity in a manner that may support spatial navigation.

DOI: abh4272

Source: https://www.science.org/doi/10.1126/science.abh4272

 

期刊信息
Science:《科学》,创刊于1880年。隶属于美国科学促进会,最新IF:41.037