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一个用于整合运动动作反馈的脊椎本体感受器官。

A spinal organ of proprioception for integrated motor action feedback.

机构信息

Department of Neuroscience, Karolinska Institutet, 171 77 Stockholm, Sweden.

Electrochemical Innovation Lab, Department of Chemical Engineering, University College London, London, UK.

出版信息

Neuron. 2021 Apr 7;109(7):1188-1201.e7. doi: 10.1016/j.neuron.2021.01.018. Epub 2021 Feb 11.

Abstract

Proprioception is essential for behavior and provides a sense of our body movements in physical space. Proprioceptor organs are thought to be only in the periphery. Whether the central nervous system can intrinsically sense its own movement remains unclear. Here we identify a segmental organ of proprioception in the adult zebrafish spinal cord, which is embedded by intraspinal mechanosensory neurons expressing Piezo2 channels. These cells are late-born, inhibitory, commissural neurons with unique molecular and physiological profiles reflecting a dual sensory and motor function. The central proprioceptive organ locally detects lateral body movements during locomotion and provides direct inhibitory feedback onto rhythm-generating interneurons responsible for the central motor program. This dynamically aligns central pattern generation with movement outcome for efficient locomotion. Our results demonstrate that a central proprioceptive organ monitors self-movement using hybrid neurons that merge sensory and motor entities into a unified network.

摘要

本体感觉对于行为至关重要,它为我们在物理空间中的身体运动提供了感知。本体感受器器官被认为仅存在于身体的外周。中枢神经系统是否能够内在地感知自身的运动仍然不清楚。在这里,我们在成年斑马鱼脊髓中鉴定出一个节段性的本体感觉器官,该器官被表达 Piezo2 通道的脊髓内机械感觉神经元所嵌入。这些细胞是迟发性的、抑制性的、连合性神经元,具有独特的分子和生理特征,反映了双重感觉和运动功能。中枢本体感觉器官在运动过程中局部检测到身体的侧向运动,并为负责中枢运动程序的节律生成中间神经元提供直接的抑制性反馈。这使得中枢模式生成与运动结果动态保持一致,从而实现高效的运动。我们的结果表明,一个中枢本体感觉器官使用混合神经元来监测自身运动,这些神经元将感觉和运动实体融合到一个统一的网络中。

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