MacKay W A
Department of Physiology, University of Toronto, Ont. Canada.
Brain Res. 1988 Mar 1;442(2):240-54. doi: 10.1016/0006-8993(88)91509-0.
Single units in the fastigial, interpositus and dentate nuclei of two stump-tail macaque monkeys were studied in relation to a right arm, visually guided reaching task. Of 638 recorded cells, 149 showed activity changes correlated to the task, including 24 in the contralateral fastigial and interpositus. Reach-related discharge patterns fell into two broad categories, tonic and phasic. Tonic responses were maintained throughout the reach with no observable relation to kinematic parameters. Most of the task-related activity occurred during the upward lift of the arm toward the target button, with a drop-off as the arm was lowered toward the rest plate. Phasic response cells fired bursts (or suppressed discharge) at specific points in the arm trajectory, most commonly during the lift phase. Many had a sharp drop in discharge when the shoulder flexion torque was transiently reversed to decelerate the arm. For either type, restricted directional specificity was rarely seen in any nucleus, and correlations with recorded EMGs were weak. Visual responses to target button illumination were observed in both the fastigial and dentate nuclei, but did not necessarily correspond with the button giving the best movement-related response. Task-related activity changes started earliest in the fastigial nuclei and latest in the interpositus nuclei. The data suggested that cerebellar output facilitates motor centers in a rather general manner, but at precisely determined times.
对两只断尾猕猴的顶核、间位核和齿状核中的单个神经元进行了研究,这些神经元与右臂的视觉引导够物任务相关。在记录的638个细胞中,149个显示出与任务相关的活动变化,其中包括对侧顶核和间位核中的24个。与够物相关的放电模式可分为两大类,即紧张性和相位性。紧张性反应在整个够物过程中持续存在,与运动学参数无明显关系。大多数与任务相关的活动发生在手臂向上抬向目标按钮的过程中,当手臂向下放向静止板时活动减少。相位性反应细胞在手臂轨迹的特定点发放爆发性放电(或抑制放电),最常见于抬起阶段。当肩部屈曲扭矩短暂反转以使手臂减速时,许多细胞的放电会急剧下降。对于任何一种类型,在任何核中都很少见到受限的方向特异性,并且与记录的肌电图的相关性较弱。在顶核和齿状核中均观察到对目标按钮照明的视觉反应,但不一定与给出最佳运动相关反应的按钮相对应。与任务相关的活动变化在顶核中开始最早,在间位核中开始最晚。数据表明,小脑输出以一种相当普遍的方式促进运动中枢,但在精确确定的时间。