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Neuronal correlates of motor performance and motor learning in the primary motor cortex of monkeys adapting to an external force field.

机译:猴子的初级运动皮层运动能力与运动学习的神经元相关性,以适应外力场。

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摘要

The primary motor cortex (M1) is known to control motor performance. Recent findings have also implicated M1 in motor learning, as neurons in this area show learning-related plasticity. In the present study, we analyzed the neuronal activity recorded in M1 in a force field adaptation task. Our goal was to investigate the neuronal reorganization across behavioral epochs (before, during, and after adaptation). Here we report two main findings. First, memory cells were present in two classes. With respect to the changes of preferred direction (Pd), these two classes complemented each other after readaptation. Second, for the entire neuronal population, the shift of Pd matched the shift observed for muscles. These results provide a framework whereby the activity of distinct neuronal subpopulations combines to subserve both functions of motor performance and motor learning.
机译:已知主运动皮质(M1)控制运动性能。最近的发现也将M1牵涉到运动学习中,因为该区域的神经元显示出与学习有关的可塑性。在本研究中,我们分析了力场适应任务中M1中记录的神经元活动。我们的目标是研究跨行为时期(适应之前,之中和之后)的神经元重组。在这里,我们报告两个主要发现。首先,存储单元分为两类。关于优选方向(Pd)的变化,这两个类别在重新适应后彼此互补。其次,对于整个神经元群体,Pd的变化与肌肉观察到的变化相匹配。这些结果提供了一个框架,不同的神经元亚群的活动结合起来,可以同时发挥运动功能和运动学习功能。

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