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Toward Synergy-Based Brain-Machine Interfaces

机译:迈向基于协同的脑机接口

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摘要

This paper demonstrates a synergy-based brain-machine interface that uses low-dimensional command signals to control a high dimensional virtual hand. First, temporal postural synergies were extracted from the angular velocities of finger joints of five healthy subjects when they performed hand movements that were similar to activities of daily living. Two synergies inspired from the extracted synergies, namely, two-finger pinch and whole-hand grasp, were used in real-time brain control, where a virtual hand with $10$ degrees of freedom was controlled to grasp or pinch virtual objects. These two synergies were controlled by electrocorticographic (ECoG) signals recorded from two electrodes of an electrode array that spanned motor and speech areas of an individual with intractable epilepsy, thus demonstrating closed loop control of a synergy-based brain-machine interface.
机译:本文演示了基于协同的脑机界面,该界面使用低维命令信号来控制高维虚拟手。首先,从五个健康受试者手指关节的角速度中提取时间姿势协同效应,这些受试者进行类似于日常活动的手部运动。实时脑部控制使用了从提取的协同作用中得到的两个协同作用,即两指捏和全手抓握,其中控制了具有$ 10 $自由度的虚拟手来抓握或捏住虚拟对象。这两个协同作用由记录在电极阵列的两个电极上的脑电图(ECoG)信号控制,该信号跨越患有顽固性癫痫的个体的运动和言语区域,因此证明了基于协同作用的脑机接口的闭环控制。

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