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Differences in motor cortical representations of kinematic variables between action observation and action execution and implications for brain-machine interfaces

机译:动作观察与动作执行之间运动学变量的运动皮层表示差异以及对人机界面的影响

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Observing an action being performed and executing the same action cause similar patterns of neural activity to emerge in the primary motor cortex (MI). Previous work has shown that the neural activity evoked during action observation (AO) is informative as to both the kinematics and muscle activation patterns of the action being performed, although the neural activity recorded during action observation contains less information than the activity recorded during action execution (AE). In this study, we extend these results by comparing the representation of different kinematic variables in MI single /multi unit activity between AO and AE conditions in three rhesus macaques. We show that the representation of acceleration decreases more significantly than that of position and velocity in AO (population decoding performance for acceleration decreases more steeply, and fewer neurons in AO encode acceleration significantly as compared to AE). We discuss the relevance of these results to brain-machine interfaces that make use of neural activity during AO to initialize a mapping function between neural activity and motor commands.
机译:观察正在执行的动作并执行相同的动作,会在初级运动皮层(MI)中出现类似的神经活动模式。先前的工作表明,在动作观察(AO)期间诱发的神经活动对于正在执行的动作的运动学和肌肉激活模式均具有指导意义,尽管在动作观察期间记录的神经活动所包含的信息少于在动作执行期间记录的活动(AE)。在这项研究中,我们通过比较三种恒河猴猕猴在AO和AE条件下MI单/多单位活动中不同运动学变量的表示来扩展这些结果。我们表明,加速度的表示比AO中的位置和速度的表示更显着下降(加速度的人口解码性能下降得更陡,并且与AE相比,AO中较少的神经元显着编码加速度)。我们讨论了这些结果与在AO期间利用神经活动初始化神经活动和运动命令之间的映射功能的脑机接口的相关性。

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