首页> 外文期刊>The Journal of Physiology >Modulation of non-monosynaptic excitation from ankle dorsiflexor afferents to quadriceps motoneurones during human walking.
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Modulation of non-monosynaptic excitation from ankle dorsiflexor afferents to quadriceps motoneurones during human walking.

机译:在人类行走过程中,从脚踝背屈传入非四突触刺激到运动神经元股四头肌。

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摘要

Modulation of non-monosynaptic excitation from ankle dorsiflexors to quadriceps (Q) motoneurones during human treadmill walking was investigated in 25 healthy human subjects. Stimulation of the common peroneal nerve (CPN) evoked a biphasic facilitation in the rectified and averaged (n = 50) Q electromyographic (EMG) activity between 0 and 100 ms after heel strike. Prior to heel strike, the stimulation had no effect on the Q EMG. The latency of both peaks in the response was too long to be explained by a monosynaptic pathway to Q motoneurones. During voluntary tonic co-contraction of Q and tibialis anterior (TA) while standing, only the first of the two peaks was evoked by the CPN stimulation despite a background EMG activity level in the Q and TA muscles corresponding to that observed 30-60 ms after heel strike during walking. Stimulation of cutaneous nerves did not evoke a similar biphasic facilitation in the Q motoneurones, which suggests that muscular afferents mediate the response. The second peak had a higher threshold than the earlier peak. During cooling of the CPN, the latency of the second peak was more prolonged than the latency of the earlier peak. This suggests that afferents of different diameters contributed to the two peaks. It is proposed that afferents from TA assist the contraction of Q during walking via spinal interneurones to stabilize the knee joint and maintain upright posture during walking.
机译:在25名健康人体受试者中研究了在跑步机行走过程中从脚踝背屈肌向股四头肌(Q)运动神经元的非单突触兴奋性的调制。足跟打击后0到100毫秒之间,对腓总神经(CPN)的刺激引起矫正和平均(n = 50)Q肌电图(EMG)活动的双相促进。在脚跟撞击之前,刺激对Q EMG没有影响。响应中两个峰的潜伏期都太长,无法用通向Q运动神经元的单突触途径来解释。在站立时Q和胫前肌(TA)的自愿性强直共收缩期间,尽管Q和TA肌肉的背景EMG活动水平对应于观察到的30-60 ms,但CPN刺激仅诱发了两个峰中的第一个走路时脚跟撞击后。刺激皮肤神经并没有引起Q运动神经元的相似的双相促进,这表明肌肉传入介导了反应。第二个峰的阈值比前面的峰高。在CPN冷却期间,第二个峰的等待时间比之前的峰的等待时间更长。这表明不同直径的传入物促成两个峰。建议TA的传入者在行走过程中通过脊神经中枢来辅助Q的收缩,以稳定膝关节并在行走过程中保持直立姿势。

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