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人类分级步行过程中比目鱼肌H反射的兴奋性

Excitability of the soleus H reflex during graded walking in humans.

作者信息

Simonsen E B, Dyhre-Poulsen P, Voigt M

机构信息

Institute of Medical Anatomy Department C, Panum Institute, University of Copenhagen, Denmark.

出版信息

Acta Physiol Scand. 1995 Jan;153(1):21-32. doi: 10.1111/j.1748-1716.1995.tb09830.x.

Abstract

The excitability of the soleus Hoffmann (H) reflex was measured in five healthy male subjects during graded treadmill walking. Uphill and downhill walking at an 8% grade as well as level walking were used to vary the demands for lengthening and shortening contractions of the soleus muscle. These changes were assumed to cause differences in control of the afferent input in the spinal cord and the voluntary output to the soleus muscle. The H reflex was strongly modulated in all three walking conditions, high during the stance phase and low or absent during the swing phase. The shape of the modulations was, however, different. At uphill walking the reflex increased gradually during the whole stance phase and seemed to follow the soleus electromyogram (EMG) pattern closely. In the downhill condition the reflex excitability increased rapidly at heel strike like the soleus EMG and co-contraction of the anterior tibial muscle was observed. At level walking a fast rise in reflex excitability was seen just after heel strike with low or absent soleus EMG. Mean soleus EMG was lower during downhill than during uphill or level walking, but the mean H reflex amplitude was similar in all three conditions. However, when the H reflex was related directly to the EMG activity by linear regression the reflex gain was lower during uphill walking than in the two other conditions. Furthermore, the ratio between H reflex and EMG amplitude was high during the first half of the stance phase at level walking indicating an elevated reflex excitability independent of the voluntary motor output. It is therefore concluded that the modulation of reflexes during walking cannot be interpreted in terms of the idea of automatic gain compensation. The reflexes must be controlled specifically and independently during the different phases of the motor output to meet the mechanical requirements of the movement task. Most explicitly this was seen during downhill walking, where an elevated reflex excitability together with co-contraction at the ankle joint seem to provide increased joint stiffness and security, when the kinetic energy of the body has to be brought under control at heel strike.

摘要

在分级跑步机行走过程中,对5名健康男性受试者的比目鱼肌霍夫曼(H)反射兴奋性进行了测量。采用8%坡度的上坡和下坡行走以及平路行走,以改变比目鱼肌拉长和缩短收缩的需求。这些变化被认为会导致脊髓传入输入控制和比目鱼肌自主输出的差异。在所有三种行走条件下,H反射都受到强烈调制,在站立期较高,在摆动期较低或消失。然而,调制的形状不同。在上坡行走时,反射在整个站立期逐渐增加,似乎与比目鱼肌肌电图(EMG)模式密切相关。在下坡情况下,反射兴奋性在足跟触地时迅速增加,与比目鱼肌EMG相似,并且观察到胫骨前肌的协同收缩。在平路行走时,足跟触地后立即出现反射兴奋性的快速上升,此时比目鱼肌EMG较低或消失。下坡时比目鱼肌平均EMG低于上坡或平路行走时,但在所有三种条件下平均H反射幅度相似。然而,当通过线性回归将H反射直接与EMG活动相关联时,上坡行走时的反射增益低于其他两种条件。此外,在平路行走的站立期前半段,H反射与EMG幅度之比很高,表明反射兴奋性升高,与自主运动输出无关。因此得出结论,行走过程中反射的调制不能用自动增益补偿的概念来解释。在运动输出的不同阶段,反射必须进行特异性和独立控制,以满足运动任务的机械要求。最明显的是在下坡行走时,当身体的动能在足跟触地时必须得到控制时,反射兴奋性升高以及踝关节的协同收缩似乎提供了增加的关节刚度和稳定性。

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