首页> 美国卫生研究院文献>The Journal of Physiology >Tremor in the tension developed isometrically by soleus during the tonic vibration reflex in the decerebrate cat.
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Tremor in the tension developed isometrically by soleus during the tonic vibration reflex in the decerebrate cat.

机译:在去脑猫的强直振动反射过程中由比目鱼肌等距地发展出紧张的震颤。

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摘要

1. Irregularities in the development of tension during the tonic vibration reflex of the soleus muscle of the decerebrate cat have been analysed into their frequency components. The reflex was recorded isometrically and elicited by longitudinal vibration, normally at 150 Hz. The amplitude of vibration was set so as to elicit a maximal reflex response, suggesting 1:1 driving of the majority of the Ia afferents at the frequency of vibration. 2. The resulting power spectrum regularly showed a well marked tremor peak separated by a trough from any slow irregularities. The predominant frequency of this tremor varied from 4 to 11 Hz in different preparations, with a mean of 7.4 Hz; on average, frequencies within 1.7 Hz on either side contained over half the power of the predominant frequency. Altering the frequency of vibration did not alter the distribution of tremor frequencies. 3. The root mean square value of the tension irregularities, over the range 4-14 Hz, varied from 12 to 110 mN in different preparations (median value, 23 mN); this was superimposed on mean active reflex tensions varying from 2 to 10 N. 4. The 'tremor' due to a single motor unit was estimated from spectral analysis of tetanic contractions of the whole muscle and decreased with increasing frequency of activation. Comparison of the single unit values with the tremor seen during vibration in the same preparations showed that equivalent amounts of tremor to the latter could typically have been produced by the continued synchronous contraction of about five 'average' motor units firing at the predominant tremor frequency. 5. When a tonic stretch reflex was present its tremor frequencies did not differ consistently from those of the tonic vibration reflex. On average, the tremor was smaller for the stretch reflex than for the tonic vibration reflex; the difference was usually slight and might have been related to the stretch refex tension being smaller. 6. Evidence was obtained that the tremor was not due to any insecurity of 1:1 driving of the Ia afferents by the vibration. First, the tremor did not increase when the amplitude of vibration was decreased sufficiently to ensure that the degree of 1:1 driving must have been reduced. Secondly, the introduction of a comparable 'artificial tremor' by sinusoidally oscillating the muscle at low frequency did not produce the e.m.g. response that would have been expected if the applied 'tremor' had been modulating the firing of the Ia or any other group of afferents. 7. It is concluded that the observed tremor cannot be attributed to 'oscillation in the stretch reflex arc', though without prejudice to the role of this mechanism under other conditions and especially when the recording is not isometric. However, the genesis of the tremor has not been established and much of it might result simply from the chance synchronization of motor units that are firing below their tetanic fusion frequency.
机译:1.已经分析了去脑猫比目鱼肌的强直振动反射过程中张力发展的不规则性。反射是等轴测的,通常是在150 Hz下通过纵向振动引起的。设置振动幅度以引起最大的反射响应,这表明在振动频率下大多数Ia传入的1:1驱动。 2.产生的功率谱通常显示出一个明显的震颤峰,由低谷与任何缓慢的不规则形分隔。在不同的准备中,这种震颤的主要频率从4到11 Hz不等,平均为7.4 Hz。平均而言,任一侧1.7 Hz以内的频率都占主导频率功率的一半以上。改变振动频率不会改变震颤频率的分布。 3.在不同的制剂中,张力不规则的均方根值在4-14 Hz范围内从12到110 mN不等(中值为23 mN);这被叠加在2到10 N的平均主动反射张力上。4。由于单个运动单位引起的“震颤”是根据整个肌肉的破伤风收缩的频谱分析估计的,并且随着激活频率的增加而降低。在相同的准备工作中,将单个单位值与在振动过程中看到的震颤进行比较表明,通常可以通过在主要震颤频率下连续约五个“平均”运动单位的持续同步收缩来产生与后者相等的震颤量。 5.出现强直反射时,其震颤频率与强直振动反射的震颤频率并不一致。平均而言,拉伸反射的震颤比强直振动反射的震颤小。差异通常很小,可能与拉伸refex张力较小有关。 6.获得的证据表明,震颤不是由于振动导致的Ia传入1:1驱动的任何不安全性。首先,当振动幅度充分减小以确保必须减小1:1驱动程度时,震颤不会增加。其次,通过以低频正弦振动肌肉引入类似的``人工震颤''不会产生例如如果应用的“震颤”已经调节了Ia或其他任何传入组的发射,则可以预期会有这样的响应。 7.结论是,观察到的震颤不能归因于“拉伸反射弧中的振荡”,尽管在不影响该机制在其他条件下的作用下,尤其是当记录不是等距时。但是,震颤的起因尚未确定,其中很大一部分可能仅是由于以低于其手性融合频率发射的运动单元的偶然同步所致。

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