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运动方向的神经元群体编码

Neuronal population coding of movement direction.

作者信息

Georgopoulos A P, Schwartz A B, Kettner R E

出版信息

Science. 1986 Sep 26;233(4771):1416-9. doi: 10.1126/science.3749885.

Abstract

Although individual neurons in the arm area of the primate motor cortex are only broadly tuned to a particular direction in three-dimensional space, the animal can very precisely control the movement of its arm. The direction of movement was found to be uniquely predicted by the action of a population of motor cortical neurons. When individual cells were represented as vectors that make weighted contributions along the axis of their preferred direction (according to changes in their activity during the movement under consideration) the resulting vector sum of all cell vectors (population vector) was in a direction congruent with the direction of movement. This population vector can be monitored during various tasks, and similar measures in other neuronal populations could be of heuristic value where there is a neural representation of variables with vectorial attributes.

摘要

尽管灵长类动物运动皮层手臂区域的单个神经元仅大致调谐至三维空间中的特定方向,但动物能够非常精确地控制其手臂的运动。研究发现,运动方向由一群运动皮层神经元的活动唯一预测。当将单个细胞表示为沿其偏好方向的轴做出加权贡献的向量时(根据其在考虑的运动过程中的活动变化),所有细胞向量的所得向量和(群体向量)与运动方向一致。在各种任务中都可以监测这个群体向量,并且在存在具有矢量属性变量的神经表征的情况下,其他神经元群体中的类似测量可能具有启发价值。

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