Moran D W, Schwartz A B
The Neurosciences Institute, San Diego, California 92121, USA.
J Neurophysiol. 1999 Nov;82(5):2676-92. doi: 10.1152/jn.1999.82.5.2676.
The motor cortical substrate associated with reaching was studied as monkeys moved their hands from a central position to one of eight targets spaced around a circle. Single-cell activity patterns were recorded in the proximal arm area of motor cortex during the task. In addition to the well-studied average directional selectivity ("preferred direction") of single-cell activity, we also found the time-varying speed of movement to be represented in the cortical activity. A single equation relating motor cortical discharge rate to these two parameters was developed. This equation, which has both independent (speed only) and interactive (speed and direction) components, described a large portion of the time-varying motor cortical activity during the task. Electromyographic activity from a number of upper arm muscles was recorded during this task. Muscle activity was also found to be directionally tuned; however, the distributions of preferred directions were found to be significantly different from cortical activity. In addition, the effect of speed on cortical and muscle activity was also found to be significantly different.
当猴子将手从中心位置移动到围绕一个圆圈分布的八个目标之一时,对与伸手动作相关的运动皮层基质进行了研究。在任务执行过程中,记录了运动皮层近端臂区的单细胞活动模式。除了对单细胞活动中经过充分研究的平均方向选择性(“偏好方向”)进行研究外,我们还发现运动的时变速度也在皮层活动中得到体现。我们推导了一个将运动皮层放电率与这两个参数相关联的单一方程。这个方程既有独立成分(仅速度)又有交互成分(速度和方向),描述了任务期间大部分随时间变化的运动皮层活动。在此任务期间,记录了多条上臂肌肉的肌电图活动。肌肉活动也被发现具有方向调谐性;然而,偏好方向的分布与皮层活动显著不同。此外,速度对皮层和肌肉活动的影响也被发现存在显著差异。