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Stumbling reactions in man: significance of proprioceptive and pre-programmed mechanisms.

机译:人的绊脚石反应:本体感受和预编程机制的意义。

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摘要

1. Electromyogram (e.m.g.) responses of the leg musculature and the corresponding joint movements were studied following a perturbation of the limb during walking on a treadmill, produced by a randomly timed treadmill acceleration impulse, either predictable, or unpredictable in its amplitude and rate of acceleration. 2. The rate of rise of ipsilateral gastrocnemius e.m.g. response following a perturbation was dependent on the rate of treadmill acceleration. For a given acceleration rate the amplitude of the e.m.g. response and the timing of its peak was dependent on the amplitude of the impulse and the rate of rise of the gastrocnemius response was the same for impulses of both small and large amplitude. The onset latency was shorter (65 ms) for high accelerations and longer (85 ms) for lower ones. 3. The amplitude of the ipsilateral biceps femoris response was much smaller than the gastrocnemius response but was larger following unpredictable than predictable impulses. 4. The initial gastrocnemius response was followed by a tibialis anterior activation associated with a gastrocnemius depression and sometimes with a second, weak gastrocnemius activation. The gastrocnemius depression ended within a fixed time range relative to the onset of the response. The tibialis anterior activation was most pronounced when unpredictable impulses with high acceleration but a small amplitude were induced. 5. It is concluded that generation of the first gastrocnemius response is obviously under continuous control by muscle proprioceptive information and can be best described in terms of a stretch reflex response. It is suggested that, on the evidence of the diphasic or triphasic e.m.g. pattern, a close interaction occurs between a central programme and muscle proprioceptive input in order to generate the appropriate e.m.g. pattern. 6. On the basis of earlier work (Berger, Dietz & Quintern, 1984a) and on the present results it is suggested that the e.m.g. responses may be mediated mainly by muscle proprioceptive input from group II afferents. This input is modulated and processed by spinal interneuronal circuits, closely connected with spinal locomotor centres. The mode of processing depends on various factors, such as the predictability of the nature of the impulse.
机译:1.在跑步机上行走时肢体受到扰动后,研究了腿部肌肉的肌电图(emg)响应以及相应的关节运动,这是由随机定时的跑步机加速度脉冲产生的,其振幅和速率可预测或不可预测加速。 2.同侧腓肠肌的上升速度,例如摄动后的反应取决于跑步机的加速度。对于给定的加速度,例如响应和其峰值的时间取决于脉冲的幅度,腓肠肌响应的上升速率对于小幅度和大幅度脉冲都是相同的。高加速度的起效潜伏期较短(65 ms),低加速度的起伏潜伏期较长(85 ms)。 3.同侧股二头肌的响应幅度比腓肠肌响应小得多,但在不可预知的冲动后幅度较大。 4.最初的腓肠肌反应是胫骨前部激活,伴有腓肠肌压抑,有时伴有第二次弱的腓肠肌激活。腓肠肌腓肠肌相对于反应开始在固定的时间范围内结束。当无法预测的高加速度脉冲产生时,胫骨前部激活最为明显,但振幅较小。 5.结论是,第一腓肠肌反应的产生显然受到肌肉本体感受信息的持续控制,并且可以用拉伸反射反应来最好地描述。建议根据两相或三相的证据,例如模式,在中央程序和肌肉本体感受输入之间发生紧密的相互作用,以产生适当的例如图案。 6.根据较早的工作(Berger,Dietz&Quintern,1984a)和目前的结果,建议将应答可能主要由II组传入者的肌肉本体感受输入介导。该输入由与脊髓运动中心紧密相连的脊髓神经内电路调制和处理。处理方式取决于各种因素,例如脉冲性质的可预测性。

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