Suppr超能文献

手部路径相似但手臂方向不同的伸展动作。I. 运动皮层中单个细胞的活动

Reaching movements with similar hand paths but different arm orientations. I. Activity of individual cells in motor cortex.

作者信息

Scott S H, Kalaska J F

机构信息

Département de Physiologie, Université de Montréal, Quebec, Canada.

出版信息

J Neurophysiol. 1997 Feb;77(2):826-52. doi: 10.1152/jn.1997.77.2.826.

Abstract

This study shows that the discharge of many motor cortical cells is strongly influenced by attributes of movement related to the geometry and mechanics of the arm and not only by spatial attributes of the hand trajectory. The activity of 619 directionally tuned cells was recorded from the motor cortex of two monkeys during reaching movements with the use of similar hand paths but two different arm orientations, in the natural parasagittal plane and abducted into the horizontal plane. Nearly all cells (588 of 619, 95%) showed statistically significant changes in activity between the two arm orientations [analysis of variance (ANOVA). P < 0.01]. A majority of cells showed a significant change in their overall level of activity (ANOVA, main effect of task, P < 0.01) between arm orientations before, during, and after movement. Many cells (433 of 619, 70%) also showed a significant change in the relation of their discharge with movement direction (ANOVA, task x direction interaction term, P < 0.01) during movement, including changes in the dynamic range of discharge with movement and changes in the directional preference of cells that were directionally tuned in both arm orientations. Similar effects were seen for the discharge of cells while the monkey maintained constant arm postures over the different peripheral targets with the use of different arm orientations. Repeated data files from the same cell with the use of the same arm orientation showed only small changes in the level of discharge or in directional tuning, suggesting that changes in cell discharge between arm orientations cannot be explained by random temporal variations in cell activity. The distribution of movement-related preferred directions of the whole sample differed between arm orientations, and also differed strongly between cells receiving passive input predominantly from the shoulder or elbow. The electromyographic activity of most prime mover muscles at the shoulder and elbow was also strongly affected by arm orientation, resulting in changes in overall level of activity and/or directional tuning that often resembled those of the proximal arm-related motor cortical cells. A mathematical model that represented movements in terms of movement direction centered on the hand could not account for any of the arm-orientation-related response changes seen in this task, whereas models in intrinsic parameter spaces of joint kinematics and joint torques predicted many of the effects.

摘要

本研究表明,许多运动皮层细胞的放电受到与手臂几何形状和力学相关的运动属性的强烈影响,而不仅仅是手轨迹的空间属性。在两只猴子进行伸手动作时,利用相似的手部路径但两种不同的手臂方位(在自然矢状面和外展至水平面),记录了运动皮层中619个方向调谐细胞的活动。几乎所有细胞(619个中的588个,95%)在两种手臂方位之间的活动表现出统计学上的显著变化[方差分析(ANOVA),P < 0.01]。大多数细胞在运动前、运动中和运动后,其活动的总体水平在手臂方位之间有显著变化(ANOVA,任务主效应,P < 0.01)。许多细胞(619个中的433个,70%)在运动过程中其放电与运动方向的关系也有显著变化(ANOVA,任务×方向交互项,P < 0.01),包括放电随运动的动态范围变化以及在两种手臂方位中均为方向调谐的细胞的方向偏好变化。当猴子使用不同的手臂方位在不同外周目标上保持恒定手臂姿势时,细胞放电也观察到类似效应。使用相同手臂方位从同一细胞重复获取的数据文件显示,放电水平或方向调谐仅有微小变化,这表明手臂方位之间细胞放电的变化不能用细胞活动的随机时间变化来解释。整个样本中与运动相关的偏好方向分布在手臂方位之间不同,并且在主要接受来自肩部或肘部被动输入的细胞之间也有很大差异。肩部和肘部大多数原动肌的肌电图活动也受到手臂方位的强烈影响,导致活动总体水平和/或方向调谐的变化,这些变化通常类似于与近端手臂相关的运动皮层细胞的变化。一个以手部为中心用运动方向表示运动的数学模型无法解释此任务中看到的任何与手臂方位相关的反应变化,但关节运动学和关节扭矩的固有参数空间模型预测了许多效应。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验