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灵长类动物大细胞红核在伸手抓握过程中对手部预塑形时间的作用。

Contribution of primate magnocellular red nucleus to timing of hand preshaping during reaching to grasp.

作者信息

Van Kan Peter L E, McCurdy Martha L

机构信息

Department of Kinesiology, Medical Sciences Center Rm. 3195, University of Wisconsin, 1300 University Avenue, Madison, WI 53706-1532, USA.

出版信息

J Neurophysiol. 2002 Mar;87(3):1473-87. doi: 10.1152/jn.00038.2001.

Abstract

Magnocellular red nucleus (RNm) is involved in controlling goal-directed limb movements such as reaching to grasp. We tested two hypotheses related to RNm's role in controlling reach-to-grasp movements. One hypothesis is that forelimb RNm neurons are grasp specific, and the other is that they specify the timing of metacarpi-phalangeal (MCP) extension to preshape the hand during the appropriate phase of the reach. We recorded single-unit discharge while monkeys performed two behavioral tasks that elicited similar reaches but differed in grasp. One task consisted of a reach with a precision grasp that elicited independent use of thumb and forefinger; the other included a whole-hand grasp that elicited concerted use of the four fingers. Most RNm neurons tested were engaged strongly during both the whole-hand and precision tasks, and the magnitude of discharge modulation did not differ between tasks. Thus most RNm neurons are not grasp specific but, instead, may contribute to behavioral features common to the two tasks. Two methods were used to investigate relations between single-unit discharge and kinematic data from the same individual trials of the whole-hand and precision tasks for a subset of forelimb RNm neurons. One method focused on correlations between parameters of RNm discharge and the duration, amplitude, and velocity of rotation of forelimb joints for each of the tasks. The second method compared between-task differences in times of peak neuronal discharge to between-task differences in times of rotations of forelimb joints. Parameters of reach-related RNm discharge were more frequently correlated with parameters of MCP extension than with parameters of rotation of wrist, elbow, and shoulder joints. Analyses of temporal relations between discharge and kinematic data during both the whole-hand and precision tasks indicate that discharge was time locked most frequently to MCP extension and, to a lesser extent, elbow extension during both tasks. We conclude that RNm may command muscle synergies that provide a basic preshape of the hand at the appropriate phase of limb transport. In addition, the timing of RNm's contribution to hand preshaping varies with the behavioral requirements of the task.

摘要

大细胞红核(RNm)参与控制目标导向的肢体运动,如伸手抓握。我们测试了两个与RNm在控制伸手抓握运动中的作用相关的假设。一个假设是前肢RNm神经元具有抓握特异性,另一个假设是它们确定掌指关节(MCP)伸展的时间,以便在伸手的适当阶段对手部进行预塑形。我们记录了猴子执行两项行为任务时的单单元放电情况,这两项任务引发的伸手动作相似,但抓握方式不同。一项任务包括精确抓握的伸手动作,该动作引发拇指和食指的独立使用;另一项任务包括全手抓握,该动作引发四个手指的协同使用。大多数测试的RNm神经元在全手抓握和精确抓握任务中都强烈参与,并且放电调制的幅度在两项任务之间没有差异。因此,大多数RNm神经元不是抓握特异性的,而是可能对两项任务共有的行为特征有贡献。我们使用两种方法研究了前肢RNm神经元子集中全手抓握和精确抓握任务的同一次试验中,单单元放电与运动学数据之间的关系。一种方法侧重于RNm放电参数与每项任务中前肢关节旋转的持续时间、幅度和速度之间的相关性。第二种方法比较了任务之间神经元放电峰值时间的差异与前肢关节旋转时间的差异。与腕关节、肘关节和肩关节旋转参数相比,与抓握相关的RNm放电参数更频繁地与MCP伸展参数相关。对全手抓握和精确抓握任务期间放电与运动学数据之间时间关系的分析表明,在两项任务中,放电最常与MCP伸展时间锁定,在较小程度上与肘关节伸展时间锁定。我们得出结论,RNm可能指挥肌肉协同作用,在肢体运输的适当阶段为手部提供基本预塑形。此外,RNm对手部预塑形的贡献时间随任务的行为要求而变化。

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