Gibson A R, Horn K M, Stein J F, Van Kan P L
Division of Neurobiology, Barrow Neurological Institute, Phoenix, AZ 85013, USA.
Can J Physiol Pharmacol. 1996 Apr;74(4):499-512.
Neurons in the cerebellar interpositus nucleus greatly increase their discharge rates when a monkey reaches out to grasp an object. However, when the monkey is required to track a target on a screen by moving a manipulandum, the increase in discharge rate is relatively small or nonexistent. Moving the hand directly to a target is a visuomotor task that may be fundamentally different from a remote tracking task. We hypothesize that the interpositus nucleus is specialized for direct visual guidance of the limb or, alternatively, interpositus is specialized for controlling hand movements required to grasp an object. A monkey was trained to hold a sensor and move it directly over a visual target to obtain water reward. Small drawers were mounted next to two of the targets; on some trials a drawer would open so that the monkey would reach out and retrieve a raisin that had been placed in it. Interpositus neurons discharged strongly during reach to grasp the raisin but not when the monkey was positioning the sensor over the target. For individual cells, discharge pattern and amplitude were largely independent of the size and direction of the reach to grasp, suggesting that interpositus does not control direction or amplitude of the reach. The results are consistent with the hypothesis that neurons in forelimb regions of interpositus participate in the control of hand movements used in grasping, but they are not consistent with the hypothesis that interpositus neurons participate in direct visual guidance of the limb.
当猴子伸手去抓物体时,小脑间位核中的神经元放电率会大幅增加。然而,当要求猴子通过移动操作臂在屏幕上追踪目标时,放电率的增加相对较小或不存在。直接将手移向目标是一项视觉运动任务,可能与远程追踪任务有根本区别。我们假设间位核专门用于肢体的直接视觉引导,或者,间位核专门用于控制抓握物体所需的手部运动。训练一只猴子握住一个传感器并将其直接移动到视觉目标上方以获得水奖励。在其中两个目标旁边安装了小抽屉;在某些试验中,一个抽屉会打开,以便猴子伸手去取放在里面的葡萄干。间位核神经元在伸手去抓葡萄干的过程中强烈放电,但当猴子将传感器定位在目标上方时则不会。对于单个细胞,放电模式和幅度在很大程度上与抓握时伸手的大小和方向无关,这表明间位核并不控制伸手的方向或幅度。这些结果与间位核前肢区域的神经元参与抓握时手部运动控制的假设一致,但与间位核神经元参与肢体直接视觉引导的假设不一致。