Dietz V, Quintern J, Berger W
Neurosci Lett. 1984 Feb 10;44(2):131-5. doi: 10.1016/0304-3940(84)90070-3.
Stumbling reactions were studied in terms of bilateral leg muscle electromyographic (EMG) responses during locomotion on a treadmill. At random times, but fixed points in the stepping cycle, short impulses were applied to the treadmill, either accelerating or decelerating its progress. It was found that acceleration was compensated for by a strong ipsilateral gastrocnemius and contralateral tibialis anterior activation, and deceleration by a bilateral tibialis anterior activation. In both muscles the responses appeared with a latency of about 70 msec and lasted for about 150 msec. It is concluded that sudden displacements induced by acceleration or deceleration during gait are compensated for by a polysynaptic spinal pathway, with an associated depression of monosynaptic responses.
在跑步机上行走期间,根据双侧腿部肌肉肌电图(EMG)反应对绊倒反应进行了研究。在随机时间,但在步幅周期的固定点,向跑步机施加短脉冲,使其加速或减速。结果发现,加速通过同侧腓肠肌和对侧胫骨前肌的强烈激活得到补偿,减速则通过双侧胫骨前肌的激活得到补偿。在这两块肌肉中,反应潜伏期约为70毫秒,持续约150毫秒。得出的结论是,步态期间加速或减速引起的突然位移通过多突触脊髓通路得到补偿,同时伴有单突触反应的抑制。