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运动皮层潜在动力学独立编码空间和时间手臂运动参数。

Motor Cortex Latent Dynamics Encode Spatial and Temporal Arm Movement Parameters Independently.

机构信息

School of Psychology, University of Nottingham, Nottingham NG7 2RD, United Kingdom.

Département de neurosciences, Faculté de médecine, Université de Montréal, Montreal, Quebec H3T 1J4, Canada.

出版信息

J Neurosci. 2024 Aug 28;44(35):e1777232024. doi: 10.1523/JNEUROSCI.1777-23.2024.

Abstract

The fluid movement of an arm requires multiple spatiotemporal parameters to be set independently. Recent studies have argued that arm movements are generated by the collective dynamics of neurons in motor cortex. An untested prediction of this hypothesis is that independent parameters of movement must map to independent components of the neural dynamics. Using a task where three male monkeys made a sequence of reaching movements to randomly placed targets, we show that the spatial and temporal parameters of arm movements are independently encoded in the low-dimensional trajectories of population activity in motor cortex: each movement's direction corresponds to a fixed neural trajectory through neural state space and its speed to how quickly that trajectory is traversed. Recurrent neural network models show that this coding allows independent control over the spatial and temporal parameters of movement by separate network parameters. Our results support a key prediction of the dynamical systems view of motor cortex, and also argue that not all parameters of movement are defined by different trajectories of population activity.

摘要

手臂的流体运动需要设置多个时空参数,这些参数需要独立设置。最近的研究认为,手臂运动是由运动皮层神经元的集体动力学产生的。该假设未经检验的预测是,运动的独立参数必须映射到神经动力学的独立分量。在一项任务中,三只雄性猴子向随机放置的目标进行一系列的到达运动,我们表明,手臂运动的空间和时间参数在运动皮层的群体活动的低维轨迹中独立编码:每个运动的方向对应于通过神经状态空间的固定神经轨迹,其速度对应于轨迹通过的速度。递归神经网络模型表明,这种编码允许通过单独的网络参数对运动的空间和时间参数进行独立控制。我们的结果支持运动皮层动力系统观点的一个关键预测,也表明并非所有运动参数都由群体活动的不同轨迹定义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9af8/11358606/27357a2d2b29/jneuro-44-e1777232024-g001.jpg

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