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刺激人足部低阈值传入神经所引发的主动肌反射反应。

Reflex responses in active muscles elicited by stimulation of low-threshold afferents from the human foot.

作者信息

Aniss A M, Gandevia S C, Burke D

机构信息

Department of Clinical Neurophysiology, Prince Henry Hospital, Sydney, Australia.

出版信息

J Neurophysiol. 1992 May;67(5):1375-84. doi: 10.1152/jn.1992.67.5.1375.

Abstract
  1. Reflex responses were elicited in muscles that act at the ankle by electrical stimulation of low-threshold afferents from the foot in human subjects who were reclining supine. During steady voluntary contractions, stimulus trains (5 pulses at 300 Hz) were delivered at two intensities to the sural nerve (1.2-4.0 times sensory threshold) or to the posterior tibial nerve (1.1-3.0 times motor threshold for the intrinsic muscles of the foot). Electromyographic (EMG) recordings were made from tibialis anterior (TA), peroneus longus (PL), soleus (SOL), medial gastrocnemius (MG), and lateral gastrocnemius (LG) muscles by the use of intramuscular wire electrodes. 2. As assessed by averages of rectified EMG, stimulation of the sural or posterior tibial nerves at nonpainful levels evoked a complex oscillation with onset latencies as early as 40 ms and lasting up to 200 ms in each muscle. The most common initial responses in TA were a decrease in EMG activity at an onset latency of 54 ms for sural stimuli, and an increase at an onset latency of 49 ms for posterior tibial stimuli. The response of PL to stimulation of the two nerves began with a strong facilitation of 44 ms (sural) and 49 ms (posterior tibial). With SOL, stimulation of both nerves produced early inhibition beginning at 45 and 50 ms, respectively. With both LG and MG, sural stimuli produced an early facilitation at 52-53 ms. However, posterior tibial stimuli produced different initial responses in these two muscles: facilitation in LG at 50 ms and inhibition in MG at 51 ms. 3. Perstimulus time histograms of the discharge of 61 single motor units revealed generally similar reflex responses as in multiunit EMG. However, different reflex components were not equally apparent in the responses of different single motor units: an individual motor unit could respond slightly differently with a change in stimulus intensity or background contraction level. The multiunit EMG record represents a global average that does not necessarily depict the precise pattern of all motor units contributing to the average. 4. When subjects stood erect without support and with eyes closed, reflex patterns were seen only in active muscles, and the patterns were similar to those in the reclining posture. 5. It is concluded that afferents from mechanoreceptors in the sole of the foot have multisynaptic reflex connections with the motoneuron pools innervating the muscles that act at the ankle. When the muscles are active in standing or walking, cutaneous feedback may play a role in modulating motoneuron output and thereby contribute to stabilization of stance and gait.
摘要
  1. 在仰卧的人体受试者中,通过电刺激来自足部的低阈值传入神经,引发作用于踝关节的肌肉的反射反应。在稳定的随意收缩过程中,以两种强度向腓肠神经(感觉阈值的1.2 - 4.0倍)或胫后神经(足部固有肌肉运动阈值的1.1 - 3.0倍)施加刺激串(300 Hz的5个脉冲)。使用肌内线状电极从胫骨前肌(TA)、腓骨长肌(PL)、比目鱼肌(SOL)、内侧腓肠肌(MG)和外侧腓肠肌(LG)记录肌电图(EMG)。2. 通过整流EMG的平均值评估,在非疼痛水平刺激腓肠神经或胫后神经会在每块肌肉中引发复杂振荡,起始潜伏期早至40毫秒,持续长达200毫秒。TA中最常见的初始反应是,刺激腓肠神经时,EMG活动在54毫秒的起始潜伏期时降低;刺激胫后神经时,在49毫秒的起始潜伏期时增加。PL对两条神经刺激的反应始于44毫秒(腓肠神经)和49毫秒(胫后神经)的强烈易化。对于SOL,刺激两条神经分别在45毫秒和50毫秒开始产生早期抑制。对于LG和MG,刺激腓肠神经在52 - 53毫秒产生早期易化。然而,刺激胫后神经在这两块肌肉中产生不同的初始反应:LG在50毫秒时易化,MG在51毫秒时抑制。3. 61个单运动单位放电的刺激后时间直方图显示出与多单位EMG中大致相似的反射反应。然而,不同的反射成分在不同单运动单位的反应中并不同样明显:单个运动单位可能会随着刺激强度或背景收缩水平的变化而有轻微不同的反应。多单位EMG记录代表一个总体平均值,不一定描绘出对该平均值有贡献的所有运动单位的精确模式。4. 当受试者无支撑站立且闭眼时,仅在活动的肌肉中观察到反射模式,且这些模式与仰卧姿势时的相似。5. 得出的结论是,来自足底机械感受器的传入神经与支配作用于踝关节的肌肉的运动神经元池有多突触反射连接。当肌肉在站立或行走中活动时,皮肤反馈可能在调节运动神经元输出中起作用,从而有助于姿势和步态的稳定。

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