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Hand Knob Area of Premotor Cortex Represents the Whole Body in a Compositional Way

机译:Premotor Cortex的手旋钮区域以组成方式代表整个身体

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摘要

Decades after the motor homunculus was first proposed, it is still unknown how different body parts are intermixed and interrelated in human motor cortical areas at single-neuron resolution. Using multi-unit recordings, we studied how face, head, arm, and leg movements are represented in the hand knob area of premotor cortex (precentral gyrus) in people with tetraplegia. Contrary to traditional expectations, we found strong representation of all movements and a partially "compositional'' neural code that linked together all four limbs. The code consisted of (1) a limb-coding component representing the limb to be moved and (2) a movement-coding component where analogous movements from each limb (e.g., hand grasp and toe curl) were represented similarly. Compositional coding might facilitate skill transfer across limbs, and it provides a useful framework for thinking about how the motor system constructs movement. Finally, we leveraged these results to create a whole-body intracortical brain-computer interface that spreads targets across all limbs.
机译:首先提出了Motor Homunculus之后的数十年,仍然未知不同的身体部位在单神经元分辨率下在人体运动皮质区域中混合并相互关联。使用多单元录制,我们研究了在具有四叶眼的人们的Premotor Cortex(先前rolus)的手旋钮区域的面部,头部,臂和腿部运动。与传统的期望相反,我们发现所有运动和部分“组成”的神经密码的强烈代表性联系在一起四肢。该代码由(1)表示肢体的肢体编码组件和(2)组成类似的运动编码组分,其中来自每个肢体的类似运动(例如,手抓握和卷曲卷曲)。组成编码可能促进肢体的技能转移,并且它提供了一种有用的框架,用于思考电机系统如何构建运动。最后,我们利用这些结果创建了一种全身的肠球电脑界面,可在所有四肢上传播目标。

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