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行走过程中对失去地面支撑的纠正反应。I. 健康猫

Corrective responses to loss of ground support during walking. I. Intact cats.

作者信息

Gorassini M A, Prochazka A, Hiebert G W, Gauthier M J

机构信息

Division of Neuroscience, University of Alberta, Edmonton, Canada.

出版信息

J Neurophysiol. 1994 Feb;71(2):603-10. doi: 10.1152/jn.1994.71.2.603.

Abstract
  1. In the cat step cycle the electromyographic (EMG) activity in ankle extensor muscles commences approximately 70 ms before foot contact. There is a sharp peak between 10 and 25 ms after contact and the EMG then declines for the remainder of the stance phase. It has been posited that the abrupt transition in EMG after contact is the consequence of reflexes elicited by the large barrage of afferent input that signals foot touchdown. However, it is also possible that the basic profile might be generated within the CNS, with little modification by afferent input. 2. These ideas were tested in 11 normal cats. We compared EMG responses and hindlimb kinematics in steps with normal ground support and steps in which an actuator-controlled trap door unexpectedly opened, withdrawing ground support just before foot contact. 3. In the absence of ground support the transition in EMG activity was still present. The averaged EMG pattern was similar for at least 30 ms after the foot passed through the plane of the floor. We conclude that the basic extensor activation profile in this part of the cycle is generated centrally and is not substantially altered by afferent input. 4. Between 35 and 200 ms after contact the stance phase was aborted and the foot was lifted smartly out of the hole. This reaction varied both in latency and kinematic detail, suggesting a fairly complex corrective response.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 在猫的步周期中,踝关节伸肌的肌电图(EMG)活动在足部接触前约70毫秒开始。接触后10至25毫秒之间有一个尖峰,然后在站立阶段的剩余时间内EMG下降。有人认为,接触后EMG的突然转变是由大量传入输入引发的反射的结果,这些传入输入表明足部着地。然而,也有可能基本轮廓是在中枢神经系统内产生的,传入输入的修改很少。2. 在11只正常猫身上对这些想法进行了测试。我们比较了正常地面支撑的步和执行器控制的活板门意外打开、在足部接触前撤回地面支撑的步中的EMG反应和后肢运动学。3. 在没有地面支撑的情况下,EMG活动的转变仍然存在。足部穿过地板平面后至少30毫秒内,平均EMG模式相似。我们得出结论,该周期这一部分的基本伸肌激活轮廓是在中枢产生的,并且不会被传入输入显著改变。4. 在接触后35至200毫秒之间,站立阶段中止,足部迅速从洞中抬起。这种反应在潜伏期和运动学细节上都有所不同,表明是一种相当复杂的纠正反应。(摘要截短于250字)

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