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运动和体感皮层小区域的蝇蕈醇失活对精确抓握中独立手指运动和力量控制的影响。

The effects of muscimol inactivation of small regions of motor and somatosensory cortex on independent finger movements and force control in the precision grip.

作者信息

Brochier T, Boudreau M J, Paré M, Smith A M

机构信息

Centre de Recherche en Sciences Neurologiques, Département de Physiologie, Université de Montréal, 2960 Chemin de la Tour, Montréal, Quebec H3C 3J7, Canada.

出版信息

Exp Brain Res. 1999 Sep;128(1-2):31-40. doi: 10.1007/s002210050814.

Abstract

This study investigated the effects of inactivating small regions of the primary somatosensory (SI) and motor (MI) cortex on the control of finger forces in a precision grip. A monkey was trained to grasp and lift a computer-controlled object between the thumb and index finger and to hold it stationary within a narrow position window for 2 s. The grip force applied perpendicular to the object surface, the lifting or load force applied tangentially in the vertical direction, and the vertical displacement were sampled at 100 Hz. Also, the ability of the monkey to extract small pieces of food from narrow wells of a Klüver board was analyzed from video-tape. Preliminary single-unit recordings and microstimulation studies were used to map the extent of the thumb and index-finger representation within SI and MI. Two local injections of 1 microl each (5 microg/microl) of the GABA(A)-agonist muscimol were used to inactivate the thumb and index region of either the pre- or post-central gyrus. The precision grip was differently affected by muscimol injection into either SI or MI. MI injections produced a deficit in the monkey's ability to perform independent finger movements and a general weakness in the finger muscles. Whole-hand grasping movements were inappropriately performed in an attempt to grasp either the instrumented object or morsels of food. Although the effect seemed strongest on intrinsic hand muscles, a clear deficit in digit extension was also noted. As a result, the monkey was unable to lift and maintain the object within the position window for the required 2 s, and, over time, the grip force decreased progressively until the animal stopped working. Following SI injections, the most obvious effect was a loss of finger coordination. In grasping, the placement of the fingers on the object was often abnormal and the monkey seemed unable to control the application of prehensile and lifting forces. However, the detailed analysis of forces revealed that a substantial increase in the grip force occurred well before any deficit in the coordination of finger movements was noted. This observation suggests that cutaneous feedback to SI is essential for the fine control of grip forces.

摘要

本研究调查了初级体感皮层(SI)和运动皮层(MI)的小区域失活对精确抓握中手指力量控制的影响。训练一只猴子用拇指和食指抓取并提起一个计算机控制的物体,并将其在狭窄的位置窗口内保持静止2秒。垂直于物体表面施加的抓握力、在垂直方向切向施加的提起或负载力以及垂直位移以100赫兹的频率进行采样。此外,还从录像中分析了猴子从克吕弗板狭窄孔中取出小块食物的能力。初步的单神经元记录和微刺激研究用于绘制SI和MI内拇指和食指代表区的范围。使用两次局部注射,每次1微升(5微克/微升)的GABA(A)激动剂蝇蕈醇,使中央前回或中央后回的拇指和食指区域失活。将蝇蕈醇注射到SI或MI中对精确抓握的影响不同。注射到MI中会导致猴子进行独立手指运动的能力出现缺陷,手指肌肉普遍无力。为了抓取仪器化物体或食物小块,全手抓握动作执行不当。尽管这种影响对手部固有肌似乎最为明显,但也注意到手指伸展明显不足。结果,猴子无法在所需的2秒内提起并将物体保持在位置窗口内,并且随着时间的推移,抓握力逐渐下降,直到动物停止操作。注射到SI中后,最明显的影响是手指协调性丧失。在抓握时,手指在物体上的放置常常异常,猴子似乎无法控制握持力和提起力的施加。然而,对力量的详细分析表明,在注意到手指运动协调性出现任何缺陷之前,抓握力就已经大幅增加。这一观察结果表明,来自SI的皮肤反馈对于抓握力的精细控制至关重要。

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