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大鼠自由进食时的自发前肢抓握:运动皮层辅助肢体和手指定位。

Spontaneous forelimb grasping in free feeding by rats: motor cortex aids limb and digit positioning.

作者信息

Whishaw I Q, Dringenberg H C, Pellis S M

机构信息

Department of Psychology, University of Lethbridge, Alta., Canada.

出版信息

Behav Brain Res. 1992 Jun 8;48(2):113-25. doi: 10.1016/s0166-4328(05)80147-0.

Abstract

Forelimb use in grasping food during free feeding was studied in control and motor cortex damaged rats using videoanalysis and Eshkol-Wachmann Movement Notation (EWMN). Rats detected food using olfaction, grasped it by mouth, and then sat and reached for it with their paws. Once held in the paws, the food was eaten. A reach consists of: (1) lifting the forelimbs from the ground, (2) positioning them elbows-in, so that the paws were adjacent to the mouth, and (3) clasping the food in the digits. These movements were executed mainly with the upper arm. Limb movements were usually bilaterally symmetrical but when asymmetrical movements occurred, the forelimb least involved in weight support initiated the movement. As the limb was positioned for grasping, the aperture of the digits was adjusted to anticipate the size of the food and the food was grasped and manipulated with the tips of the digits. Following unilateral motor cortex lesions to the forelimb area: (1) the ipsilateral limb (good limb) initiated lifting, positioning, and grasping movements, (2) appropriate adjustment of the digits of the contralateral limb (bad limb) and grasping were impaired, and (3) when contact with food was lost, the bad limb adopted an extended, closed-fist spastic posture and could not be repositioned independently. The gross impairments cleared within 2 weeks, and after a few months impairments were infrequently observed. These findings show that: (1) spontaneous food grasping uses both proximal movements of the limb and distal movements of the digits, (2) digit aperture anticipates food size in reaching, and (3) motor cortex damage impairs both proximal and distal movements more profoundly when the limb is used independently than when it is used in conjunction with the good limb. The results are discussed in relation to kinematic studies on primates and humans.

摘要

利用视频分析和埃什科尔 - 瓦赫曼运动符号法(EWMN),对对照组大鼠和运动皮层受损大鼠在自由进食时前肢抓取食物的情况进行了研究。大鼠通过嗅觉探测食物,用嘴抓取,然后坐下并用爪子去够。一旦食物被爪子抓住,就会被吃掉。一次够取动作包括:(1)将前肢从地面抬起,(2)肘部向内弯曲使爪子靠近嘴部,(3)用手指抓住食物。这些动作主要由上臂执行。肢体动作通常是双侧对称的,但当出现不对称动作时,则由最不参与支撑体重的前肢发起动作。当肢体定位用于抓取时,手指的开口会根据食物大小进行调整,食物通过手指尖抓取和操作。在前肢区域单侧运动皮层损伤后:(1)同侧肢体(好肢)发起抬起、定位和抓取动作,(2)对侧肢体(坏肢)手指的适当调整和抓取能力受损,(3)当与食物失去接触时,坏肢会呈现伸展的握拳痉挛姿势,且无法独立重新定位。严重的损伤在2周内消除,几个月后很少观察到损伤。这些发现表明:(1)自发抓取食物既使用肢体的近端动作也使用手指远端动作,(2)在够取时手指开口会根据食物大小进行调整,(3)与好肢协同使用时相比,独立使用肢体时运动皮层损伤对近端和远端动作的损害更严重。结合对灵长类动物和人类的运动学研究对结果进行了讨论。

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