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人类肌肉纺锤体末端对非收缩肌肉振动的反应。

The responses of human muscle spindle endings to vibration of non-contracting muscles.

作者信息

Burke D, Hagbarth K E, Löfstedt L, Wallin B G

出版信息

J Physiol. 1976 Oct;261(3):673-93. doi: 10.1113/jphysiol.1976.sp011580.

Abstract
  1. In micro-electrode recordings from the human peroneal and tibial nerves, the responses of thirty-two primary spindle endings, thirteen secondary spindle endings and three Golgi tendon organs were studied during vibration of the tendons of the receptor-bearing muscles in the leg. The amplitude of the applied vibration was 1-5 mm and the frequency was varied from 20 to 220 Hz. As checked with e.m.g. and torque measurements, the muscles of the leg were relaxed during the sequences analysed. 2. Providing that the vibrator was accurately applied, all endings responded with discharges phase-locked to the vibration cycles, the discharge rates being at the vibration frequency or at subharmonics of that frequency. The response to vibration was of abrupt onset and offset, was maintained for the duration of vibration, and was not subject to fluctuation with changes in attention or with remote muscle contraction. 3. The maximal discharge rate that could be achieved varied from one ending to the next, and increased with the length of the receptor-bearing muscle. For endings driven at their maximal rate an increase in vibration frequency produced a decrease in discharge rates as the ending changed to a subharmonic pattern of response. The converse occurred on decreasing vibration frequency. 4. For any given muscle length, primary endings could generally be driven to higher rates than secondary endings but there was a wide range of responsiveness within each group and a significant overlap between the groups. At medium muscle length, the most responsive primary endings could be driven up to 220 Hz but secondary endings did not reach discharge rates higher than 100 Hz. 5. With combined vibration and passive movements, primary endings exhibited maximal vibration responsiveness during the stretching phases, sometimes firing twice per vibration cycle. During the shortening phases, however, they usually ceased responding to the vibratory stimulus. The vibration responsiveness of secondary endings was not potentiated to the same extent by on-going muscle stretch or reduced to the same extent by on-going muscle shortening. Thus, during shortening, secondary endings may be more responsive than primary endings. 6. The responses of primary endings to tendon taps were reduced during muscle vibration, a reduction which probably contributes to vibration-induced suppression of tendon jerks. Additionally, as the muscle shortened after tendon percussion, there was a transient pause in the response to vibration.
摘要
  1. 在对人体腓神经和胫神经进行微电极记录时,研究了腿部带有感受器的肌肉肌腱振动期间32个初级肌梭终末、13个次级肌梭终末和3个高尔基腱器官的反应。施加振动的幅度为1 - 5毫米,频率在20至220赫兹之间变化。通过肌电图和扭矩测量检查发现,在所分析的序列中腿部肌肉处于放松状态。2. 只要振动器准确施加,所有终末均以与振动周期锁相的放电做出反应,放电率为振动频率或该频率的次谐波频率。对振动的反应起始和终止均很突然,在振动持续期间保持不变,且不会因注意力变化或远处肌肉收缩而波动。3. 能够达到的最大放电率因终末不同而各异,并随带有感受器的肌肉长度增加而增加。对于以最大速率驱动的终末,随着振动频率增加,当终末转变为次谐波反应模式时,放电率会降低。振动频率降低时则情况相反。4. 对于任何给定的肌肉长度,初级终末通常比次级终末能被驱动到更高的速率,但每组内的反应性范围很广,两组之间有明显重叠。在中等肌肉长度时,反应最灵敏的初级终末可被驱动到220赫兹,但次级终末的放电率未超过100赫兹。5. 在振动与被动运动相结合时,初级终末在伸展阶段表现出最大的振动反应性,有时每个振动周期放电两次。然而,在缩短阶段,它们通常停止对振动刺激做出反应。次级终末的振动反应性不会因持续的肌肉伸展而同样增强,也不会因持续的肌肉缩短而同样降低。因此,在缩短过程中,次级终末可能比初级终末更敏感。6. 在肌肉振动期间,初级终末对肌腱叩击的反应减弱,这种减弱可能有助于振动引起的肌腱反射抑制。此外,在肌腱叩击后肌肉缩短时,对振动的反应会有短暂停顿。

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