Matsukawa K, Kamei H, Minoda K, Udo M
Exp Brain Res. 1982;46(3):425-37. doi: 10.1007/BF00238637.
During locomotion of decerebrate and awake walking cats, perturbation (mechanical tap) was applied to the paw dorsum of the left forelimb (LF), and the responses of both forelimbs were recorded cinematographically and electromyographically (EMG). When the tap was applied during the LF stance phase, the duration of the ongoing LF stance was shortened by 10%; in the right forelimb (RF), the duration of the concomitant swing was shortened by 32%. A tap during the LF swing phase prolonged the duration of the ongoing LF swing phase and the concomitant RF stance phase by 55 and 15%, respectively. Analysis of RF joint angle excursions showed that the shortening of the RF swing phase was related mainly to acceleration of extension movement in the late swing phase; the prolongation of the RF stance phase was related to prolonged extension movement in the late stance phase. While EMG activities were relevant to these limb movements, a notable observation was that, by tapping the LF during the LF stance phase, EMG activity in the RF extensor started well before onset of the elbow extension movement to place down the limb; without the tap, the extensor activity started shortly after onset of the extension. Closely related to changes in phase durations of each forelimb, the period of bisupport phase where both forelimbs were in stance, was retained for more than 40% of that of unperturbed steps, even when the RF or LF made the first touchdown after the tap. The rostrocaudal level at RF touchdown after the tap was comparable to unperturbed steps. These findings on interlimb relation suggest that neural control ensures coordinated movements between symmetric limbs during locomotion.
在去大脑和清醒行走的猫运动过程中,对左前肢(LF)的爪背施加扰动(机械轻敲),并通过电影摄影和肌电图(EMG)记录双前肢的反应。当在LF支撑期施加轻敲时,正在进行的LF支撑期持续时间缩短了10%;在右前肢(RF),伴随的摆动期持续时间缩短了32%。在LF摆动期施加轻敲分别使正在进行的LF摆动期和伴随的RF支撑期的持续时间延长了55%和15%。对RF关节角度偏移的分析表明,RF摆动期的缩短主要与摆动后期伸展运动的加速有关;RF支撑期的延长与支撑后期伸展运动的延长有关。虽然EMG活动与这些肢体运动相关,但一个值得注意的观察结果是,在LF支撑期轻敲LF时,RF伸肌的EMG活动在肘部伸展运动开始以放下肢体之前就开始了;没有轻敲时,伸肌活动在伸展开始后不久才开始。与每个前肢的相位持续时间变化密切相关的是,即使RF或LF在轻敲后首先着地,双前肢都处于支撑状态的双支撑期持续时间仍保持在未受扰动步幅的40%以上。轻敲后RF着地时的前后水平与未受扰动的步幅相当。这些关于肢体间关系的发现表明,神经控制确保了运动过程中对称肢体之间的协调运动。