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ADAPTATION IN CORTICAL CONTROL OF ARM MOVEMENT

机译:适应手臂运动的皮质控制

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By simultaneously recording multi-neuronal activities through chronically implanted electrode arrays in motor and sensory cortices, arm movement trajectory, and muscle activities, we observed both spatial and temporal differences in neuronal activities during different phases of a reaching task. We also discovered that when developing an effective control strategy to overcome an externally applied perturbation, the direction of the movement and the arm configuration played an important role in determining which control strategy to apply. The results indicated that predictive trajectory compensation was often adopted while stiffness control was also utilized.
机译:通过在电动机和感觉皮质的慢性植入电极阵列中同时记录多神经元活动,臂运动轨迹和肌肉活动,我们观察到在到达任务的不同阶段期间神经元活动的空间和时间差异。我们还发现,当开发有效的控制策略来克服外部应用的扰动时,运动和臂配置的方向在确定施加的控制策略方面发挥了重要作用。结果表明,通常采用预测轨迹补偿,同时也使用刚度控制。

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