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猫的自动姿势反应:后肢肌肉对多个方向站立时水平扰动的反应。

Automatic postural responses in the cat: responses of hindlimb muscles to horizontal perturbations of stance in multiple directions.

作者信息

Rushmer D S, Moore S P, Windus S L, Russell C J

机构信息

Neurological Sciences Institute, Good Samaritan Hospital and Medical Center, Portland, OR 97209.

出版信息

Exp Brain Res. 1988;71(1):93-102. doi: 10.1007/BF00247525.

Abstract

The effect of the direction of unexpected horizontal perturbations of stance on the organization of automatic postural responses was studied in cats. We recorded EMG activity in eight proximal and distal muscles of the hindlimb along with vertical forces imposed by the limbs in awake behaving cats while they stood on an hydraulic platform. Postural responses to motion of the platform in 16 different horizontal directions were recorded. Vertical force changes were consistent with passive shifts of the center of mass and active correction of stance by the animals. When the perturbation was in the sagittal plane, vertical force changes began about 65 ms following initial platform movement. When the perturbation contained a component in the lateral direction, latency for vertical force changes was about 25 ms and an inflection in the vertical force trace was observed at 65 ms. No EMG responses were observed with latencies that were short enough to account for the early force component and it was concluded that this force change was due to passive shifts of the center of mass. The amplitude of the EMG responses of each muscle recorded varied systematically as perturbation direction changed. The directions for which an individual muscle showed measurable EMG activity were termed the muscle's "angular range of activation." No angular range of activation was oriented strictly in the A-P or lateral directions. Most muscles displayed angular ranges of activation that encompassed a range of less than 180 degrees. Onset latencies of EMG responses also varied systematically with perturbation direction. The amplitude and latency relationships between muscles, which made up the organization of postural responses, also varied systematically as perturbation direction was changed. This result suggests that direction of perturbation determines organizational makeup of postural responses, and for displacements in the horizontal plane, is considered a continuous variable by the nervous system.

摘要

我们研究了猫在站立时意外水平扰动方向对自动姿势反应组织的影响。我们记录了清醒行为猫后肢八块近端和远端肌肉的肌电图(EMG)活动,以及它们站在液压平台上时肢体施加的垂直力。记录了平台在16个不同水平方向运动时的姿势反应。垂直力的变化与动物重心的被动移动和姿势的主动校正一致。当扰动在矢状面时,垂直力变化在平台初始移动后约65毫秒开始。当扰动包含横向分量时,垂直力变化的潜伏期约为25毫秒,并且在65毫秒时观察到垂直力轨迹的拐点。未观察到潜伏期短到足以解释早期力分量的肌电图反应,因此得出结论,这种力的变化是由于重心的被动移动。随着扰动方向的改变,所记录的每块肌肉的肌电图反应幅度有系统地变化。单个肌肉显示出可测量肌电图活动的方向被称为该肌肉的“激活角度范围”。没有激活角度范围严格地沿前后(A-P)或横向方向。大多数肌肉的激活角度范围小于180度。肌电图反应的起始潜伏期也随扰动方向有系统地变化。构成姿势反应组织的肌肉之间的幅度和潜伏期关系也随着扰动方向的改变而有系统地变化。这一结果表明,扰动方向决定了姿势反应的组织构成,并且对于水平面内的位移,神经系统将其视为一个连续变量。

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