Kalaska J F, Cohen D A, Prud'homme M, Hyde M L
Départment de Physiologie, Faculté de Médecine, Université de Montréal, Québec, Canada.
Exp Brain Res. 1990;80(2):351-64. doi: 10.1007/BF00228162.
A previous study reported that proximal-arm related area 5 neurons showed continuously-graded changes in activity during unloaded arm movements in different directions (Kalaska et al. 1983), which resembled the responses of primary motor cortex cells in several respects (Georgopoulos et al. 1982). We report here that loading the arm reveals an important difference between cell activity in the two areas. Loads were continuously applied to the arm in different directions. The loads produced large continuously-graded changes in muscle activity but did not alter the handpath or joint angle changes of the arm during the movements. The activity of most area 5 cells was only weakly affected by the loads, and the overall pattern of population activity was virtually unaltered under all load conditions. This indicates that area 5 activity encodes the invariant spatial parameters (kinematics) of the movements. In contrast, many motor cortex cells showed large changes in activity during loading, and so signal the changing forces, torques or muscle activity (movement dynamics; Kalaska et al. 1989).
先前的一项研究报告称,在不同方向的无负荷手臂运动过程中,与近端手臂相关的5区神经元的活动呈现出连续渐变的变化(卡拉什卡等人,1983年),这在几个方面类似于初级运动皮层细胞的反应(乔治波洛斯等人,1982年)。我们在此报告,给手臂加载负荷揭示了这两个区域细胞活动的一个重要差异。负荷以不同方向持续施加到手臂上。这些负荷使肌肉活动产生了连续渐变的大幅变化,但在运动过程中并未改变手臂的手部轨迹或关节角度变化。大多数5区细胞的活动仅受到负荷的微弱影响,并且在所有负荷条件下,群体活动的总体模式实际上未发生改变。这表明5区的活动编码了运动的不变空间参数(运动学)。相比之下,许多运动皮层细胞在加载负荷期间活动出现了大幅变化,因此它们发出变化的力、扭矩或肌肉活动的信号(运动动力学;卡拉什卡等人,1989年)。