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静态与动态肌梭运动刺激相结合对肌梭初级末梢对正弦拉伸反应的影响。

Effects of combining static and dynamic fusimotor stimulation on the response of the muscle spindle primary ending to sinusoidal stretching.

作者信息

Hulliger M, Matthews P B, Noth J

出版信息

J Physiol. 1977 Jun;267(3):839-56. doi: 10.1113/jphysiol.1977.sp011840.

Abstract
  1. A pair of fusimotor fibres, one static and the other dynamic, were stimulated simultaneously to test their combined action on the response of muscle spindle primary endings in the cat soleus to sinusoidal stretching. A frequency of 1 Hz was chiefly used, with a wide range of amplitudes (10 micronm-2 mm). The response of the ending was assessed from the parameters of the sine fitted to its firing averaged throughout the course of the cycle; this was felt useful even though the responses to the larger stretches showed certain non-linear features. 2. With small stretches (up to about 50 micronm amplitude) static action dominated, and the modulation of firing during conbined stimulation was little or no larger than that found during the static stimulation on its own, and much smaller than that found during the static stimulation on its own, and much smaller than that found during the dynamic stimulation. The phase of the response was, however, much the same for all three conditions. 3. With larger stretches the modulation with combined stimulation was intermediate between the values found on stimulating either fusimotor fibre on its own; the dynamic contribution increased progressively with the amplitude of stretching. 4. With larger stretches the phase of the response during combined stimulation was appreciably closer to that for static action than to that for dynamic action. But the differences between the various conditions were small (below 20 degrees) and seem attributable to various distortions of the response wave from away from a true sinusoid, rather than betokening a difference in the ratio of velocity to length sensitivity under the various conditions. This view was supported by the effects on phase of grading the rate of stimulation of one fusimotor fibre while holding that of the other constant. 5. Detailed comparison of the cycle histograms obtained under different conditions showed an interestingly asymmetrical pattern of summation and occlusion of the effects of the two kinds of fusimotor fibre. At the peak of the response to a large stretch static action summed with dynamic action, which was here the stronger, so that at this phase of the cycle the firing was greater with the combined stimulation than with either fibre on its own. But, in the trough of the response to the same stretch static action occluded any dynamic action, which was now the weaker, so that at this phase of the cycle the firing with combined stimulation was virtually the same as that with static stimulation on its own. With a small stretch, static action normally occluded dynamic action throughout the cycle; this is in line with the firing during static action now usually being greater than that during dynamic action for all phases of the cycle.
摘要
  1. 同时刺激一对肌梭运动纤维,一条是静态的,另一条是动态的,以测试它们对猫比目鱼肌肌梭初级末梢对正弦拉伸反应的联合作用。主要使用1Hz的频率,拉伸幅度范围很广(10微米 - 2毫米)。根据拟合其在整个周期内平均放电的正弦参数来评估末梢的反应;尽管对较大拉伸的反应显示出某些非线性特征,但认为这样做是有用的。2. 在小幅度拉伸(幅度高达约50微米)时,静态作用占主导,联合刺激期间的放电调制比单独的静态刺激时小或没有明显增大,且比单独的动态刺激时小得多。然而,在所有三种情况下,反应的相位大致相同。3. 在较大拉伸时,联合刺激的调制介于单独刺激任何一条肌梭运动纤维时的值之间;动态贡献随着拉伸幅度的增加而逐渐增加。4. 在较大拉伸时,联合刺激期间反应的相位明显更接近静态作用的相位,而不是动态作用的相位。但是不同条件之间的差异很小(低于20度),似乎是由于反应波偏离真正的正弦波而产生的各种失真,而不是表明在各种条件下速度与长度敏感性的比率存在差异。这一观点得到了在保持另一条肌梭运动纤维刺激速率不变的情况下,对其中一条肌梭运动纤维刺激速率进行分级对相位的影响的支持。5. 对不同条件下获得的周期直方图进行详细比较,显示出两种肌梭运动纤维的作用在总和与抵消方面呈现出有趣的不对称模式。在对大拉伸的反应峰值处,静态作用与动态作用相加,此时动态作用更强,因此在这个周期阶段,联合刺激时的放电比单独使用任何一条纤维时都更大。但是,在对相同拉伸的反应波谷处,静态作用抵消了任何动态作用,此时动态作用较弱,因此在这个周期阶段,联合刺激时的放电实际上与单独的静态刺激时相同。在小幅度拉伸时,静态作用通常在整个周期内抵消动态作用;这与在整个周期的所有阶段中静态作用时的放电通常大于动态作用时的放电是一致的。

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本文引用的文献

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FURTHER STUDIES OF STATIC AND DYNAMIC FUSIMOTOR FIBRES.静态和动态肌梭运动纤维的进一步研究
J Physiol. 1964 Oct;174(1):132-51. doi: 10.1113/jphysiol.1964.sp007477.
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Afferent fibers with multiple encoding sites.具有多个编码位点的传入纤维。
Brain Res. 1974 Sep 6;77(2):187-93. doi: 10.1016/0006-8993(74)90783-5.

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