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对去大脑猫的跟腱施加振动所引起的比目鱼肌的反射性兴奋。

The reflex excitation of the soleus muscle of the decerebrate cat caused by vibbration applied to its tendon.

作者信息

Matthews P B

出版信息

J Physiol. 1966 May;184(2):450-72. doi: 10.1113/jphysiol.1966.sp007926.

Abstract
  1. Vibration was applied longitudinally to the fully innervated soleus muscle of the decerebrate cat by attaching its tendon to a vibrator. Vibration at frequencies of 50-500/sec with amplitudes of 10 mu upwards caused the muscle to contract reflexly for as long as the vibration was maintained. The response was recorded myographically by a myograph mounted upon the vibrator, and electromyographically by gross ;belly-tendon' leads. The reflex contraction produced several hundred g wt. of tension and involved too many motor units for their discharges to be separable. The maintained reflex was abolished by making the preparation spinal or by anaesthetizing it with pentobarbitone, but it persisted after removing the cerebellum.2. The minimum latency for the appearance of the reflex response at the beginning of a period of vibration was about 10 msec. The latency of cessation of the response at the end of vibration was similarly short.3. On increasing the amplitude of vibration at any particular frequency in the range 100-300/sec the resulting reflex tension increased to an approximate plateau for amplitudes of vibration of 100-200 mu. Further increase in the amplitude decreased the size of the contraction, though there was no such reduction in records of the ;integrated' electromyogram.4. Such large amplitudes of vibration also reduced the tension, and shortened the duration, of a twitch contraction of the muscle elicited by stimulating its nerve. The strength of a tetanic contraction was much less affected by vibration than was that of the twitch contraction, and the muscle action potential elicited by stimulation of the nerve was unaffected. Thus, large-amplitude vibration influenced the contractile mechanism of the muscle (cf. Buchtal & Kaiser, 1951).5. Increasing the frequency of vibration increased the value of the plateau tension reached on increasing the amplitude. The effect was, however, relatively small and the largest increase seen was 3 g wt. of contractile tension per c/s increase in vibration frequency.6. The primary afferent ending of the muscle spindle is considered to be the receptor whose excitation leads to the reflex response to vibration. The vibration reflex thus appears to be the well-known stretch reflex, elicited by a rather unusual form of stretching. The size of the vibration reflex and its variation with frequency are discussed in relation to the servo theory of muscular contraction.
摘要
  1. 通过将去大脑猫完全神经支配的比目鱼肌腱附着在振动器上,沿纵向对其施加振动。频率为50 - 500次/秒、振幅向上10微米及以上的振动会使肌肉在振动持续期间反射性收缩。通过安装在振动器上的肌动描记器以肌动描记法记录反应,并通过大体的“肌腹 - 肌腱”导联以肌电图记录法记录。反射性收缩产生数百克重量的张力,涉及的运动单位过多,以至于它们的放电无法区分。通过使标本脊髓化或用戊巴比妥麻醉,可消除持续的反射,但切除小脑后反射仍持续存在。

  2. 在振动开始时,反射反应出现的最短潜伏期约为10毫秒。振动结束时反应停止的潜伏期同样很短。

  3. 在100 - 300次/秒范围内的任何特定频率下增加振动幅度,所产生的反射张力会增加到振动幅度为100 - 200微米时的近似平稳状态。进一步增加幅度会减小收缩的大小,不过在“积分”肌电图记录中没有这种减小。

  4. 如此大的振动幅度也会降低肌肉由刺激其神经引发的单收缩的张力,并缩短其持续时间。强直收缩的强度受振动的影响远小于单收缩,并且刺激神经引发的肌肉动作电位不受影响。因此,大幅度振动影响了肌肉的收缩机制(参见布赫塔尔和凯泽,1951年)。

  5. 增加振动频率会增加在增加幅度时达到的平稳张力值。然而,这种影响相对较小,观察到的最大增加量是振动频率每增加1次/秒,收缩张力增加3克重量。

  6. 肌梭的初级传入末梢被认为是其兴奋导致对振动产生反射反应的感受器。因此,振动反射似乎是一种由相当不寻常的拉伸形式引发的众所周知的牵张反射。结合肌肉收缩的伺服理论讨论了振动反射的大小及其随频率的变化。

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