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神经放电与运动皮层和小脑中肌肉活动的模式、力量、关节位置以及预期的下一个运动方向之间的相关性。

Correlation of neural discharge with pattern and force of muscular activity, joint position, and direction of intended next movement in motor cortex and cerebellum.

作者信息

Thach W T

出版信息

J Neurophysiol. 1978 May;41(3):654-76. doi: 10.1152/jn.1978.41.3.654.

Abstract
  1. Monkeys were trained to grasp a rod movable in a horizontal arc (Fig. 1), and to hold the rod by angulation of the wrist in each of three positions (A,B, C). A maintained load was placed on the rod alternately to oppose flexion and extension. At a light signal, the monkey had to move to the next position in a prescribed sequence (ABCBABCBA, ETC.). The task was designed to dissociate, while holding in position, the following variables: 1) pattern of muscular activity in the forearm required to hold the wrist in position, determined by the direction of the load (flexor or extensor muscles); 2) position of the rod, and thus angulation of the wrist joint (A, B, and C); and 3) set for the direction of the intended next movement (flexor or extensor). These variables are subsequently referred to as MPAT, JPOS, and DSET, respectively. 2. After training, recordings were made of the EMG activity of muscles used in the task and of the discharge of single neurons in the motor cortex of the cerebrum and the interposed and dentate nuclei of the cerebellum. 3. While holding the wrist in position, EMG and interpositus behaved uniformly, with higher discharge frequency under load in one direction and lower discharge frequency under load in the opposite direction. This relation was relatively independent of the position held and of the direction of the intended next movement. Thus, interpositus and EMG both seemed best related to the MPAT variable, as opposed to JPOS and DSET variables. By contrast, neurons in motor cortex and in dentate fell into three categories: one category discharged in relation to the pattern of muscular activity (MPAT), a second to the position of the wrist (JPOS), and a third to the direction of the intended next movement (DSET). While MPAT neurons formed a distinct dissociated group, neurons that were best related to JPOS were often related to DSET, and vice versa. 4. A few of the MPAT neurons in interpositus and motor cortex were further studied by varying the magnitude (as well as the direction) of the loads. Both interpositus and motor cortex MPAT neurons changed firing frequency in relation to the magnitude of load, and though few neurons were thus studied, the relation seemed clearer for interpositus than for motor cortex. 5. Anatomically, the three types of neurons thus classified by firing pattern during the hold periods were intermixed in the arm area of motor cortex. In dentate and interpositus, those neurons thus related to the performance were localized to a narrow strip across the posterior part of both nuclei. Neurons apparently related to eye and drinking movements were located more posteriorly still, suggesting somatotopic representation.
摘要
  1. 训练猴子抓取一根可在水平弧线上移动的杆(图1),并通过手腕在三个位置(A、B、C)的角度变化来握住杆。在杆上交替施加一个持续的负荷,以对抗屈曲和伸展。在灯光信号的提示下,猴子必须按照规定的顺序(ABCBABCBA等)移动到下一个位置。该任务旨在分离在保持姿势时的以下变量:1)将手腕保持在特定位置所需的前臂肌肉活动模式,由负荷方向决定(屈肌或伸肌);2)杆的位置,以及因此手腕关节的角度(A、B和C);3)设定的预期下一个动作的方向(屈肌或伸肌)。这些变量随后分别称为MPAT、JPOS和DSET。2. 训练后,记录了任务中使用的肌肉的肌电图活动以及大脑运动皮层、小脑中间核和齿状核中单个神经元的放电情况。3. 在将手腕保持在特定位置时,肌电图和中间核的表现一致,在一个方向的负荷下放电频率较高,在相反方向的负荷下放电频率较低。这种关系相对独立于保持的位置和预期下一个动作的方向。因此,与JPOS和DSET变量相比,中间核和肌电图似乎都与MPAT变量关系最为密切。相比之下,运动皮层和齿状核中的神经元分为三类:一类根据肌肉活动模式(MPAT)放电,二类根据手腕位置(JPOS)放电,三类根据预期下一个动作的方向(DSET)放电。虽然MPAT神经元形成了一个明显的分离组,但与JPOS关系最密切的神经元往往也与DSET有关,反之亦然。4. 通过改变负荷的大小(以及方向),对中间核和运动皮层中的一些MPAT神经元进行了进一步研究。中间核和运动皮层的MPAT神经元的放电频率都随负荷大小而变化,虽然研究的神经元数量很少,但这种关系在中间核中似乎比在运动皮层中更明显。5. 从解剖学上看,在保持期间根据放电模式分类的这三种类型的神经元在运动皮层的手臂区域相互混合。在齿状核和中间核中,那些与任务表现相关的神经元定位在两个核后部的一条狭窄条带中。明显与眼睛和饮水运动相关的神经元位置更靠后,表明存在躯体定位表征。

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