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初级肌梭传入纤维对以恒定速率和突然变化速率进行的肌梭运动刺激的反应。

The responses of primary spindle afferents to fusimotor stimulation at constant and abruptly changing rates.

作者信息

Hulliger M

出版信息

J Physiol. 1979 Sep;294:461-82. doi: 10.1113/jphysiol.1979.sp012941.

DOI:10.1113/jphysiol.1979.sp012941
PMID:159946
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1280568/
Abstract
  1. Single fusimotor fibres to de-efferented soleus of the cat were stimulated to investigate the size and time course of the responses elicited in single primary spindle afferents. The muscle was kept at constant length close to the physiological maximum. Constant and alternating rates of fusimotor stimulation were used: (a) repetitive stimulation at constant rate (maintained stimulation); (b) modulated stimulation with the rate of activation alternating between two constant levels at repeat frequencies between 0.09 and 2 Hz (rectangular stimulation). The responses were averaged and displayed as post-stimulus time (pst) histograms (a) or as cycle histograms (b). 2. During static fusimotor stimulation the pst histograms could be clearly modulated over a range of rates of stimulation. However, histogram modulation was not a prerequisite of static action since with different fibres the degree of modulation could range from deeply modulated to completely non-modulated to completely non-modulated. 3. Dynamic fusimotor stimulation was almost always accompanied by non-modulated pst histograms. 4. Primary spindle afferents responded to rectangular stimulation of either kind of fusimotor fibre with an approximately rectangular modulation of the rate of discharge. At the repeat frequencies studied the size of the responses was appreciably larger with static than with dynamic activation. It was assessed as 'fusimotor rate-sensitivity during alternating stimulation' by the response/stimulus ratio which is defined as change in firing/change in alternating rate of stimulation, in impulses/stimuli. The mean values of rate-sensitivity were 1.35 impulses/stimuli (statics) and 0.29 (dynamics), with a static/dynamic ratio of 4.7. 5. The afferents' 'fusimotor rate-sensitivity during steady stimulation' (change in firing/change in maintained rate of stimulation( was also determined. The mean values were 0.78 (static) and 0.37 (dynamics), with a static/dynamic ratio of 2.1. 6. The time course of the responses to rectangular stimulation was of the same order of magnitude for static and dynamic fibres. It was assessed by fitting a single exponential to the rising and falling phase of cycle histograms. The mean values of the time constants for static fibres were 58 msec (rising phase) and 59 msec (falling phase), and for dynamic fibres 34 msec (rising phase) and 49 msec (falling phase). The differences were statistically non-significant. 7. The significance of the modulation in pst histograms and the mechanisms and functional implications of the differences in rate-sensitivity are discussed. It is concluded that at constant muscle length static and dynamic fusimotor fibres differ significantly by the size rather than the speed of their action on primary spindle afferents.
摘要
  1. 刺激猫去传入神经的比目鱼肌中的单根肌梭运动纤维,以研究单根初级肌梭传入纤维所引发反应的大小和时程。肌肉保持在接近生理最大值的恒定长度。采用恒定和交替的肌梭运动刺激频率:(a) 以恒定频率重复刺激(持续刺激);(b) 调制刺激,激活频率在两个恒定水平之间交替,重复频率在0.09至2赫兹之间(矩形刺激)。对反应进行平均,并以刺激后时间(pst)直方图(a)或周期直方图(b)的形式显示。2. 在静态肌梭运动刺激期间,pst直方图在一系列刺激频率范围内可被清晰调制。然而,直方图调制并非静态作用的必要条件,因为不同纤维的调制程度范围可从深度调制到完全无调制。3. 动态肌梭运动刺激几乎总是伴随着未调制的pst直方图。4. 初级肌梭传入纤维对任何一种肌梭运动纤维的矩形刺激都会产生放电频率近似矩形的调制反应。在所研究的重复频率下,静态激活时的反应大小明显大于动态激活时的反应。通过反应/刺激比值评估为“交替刺激期间的肌梭运动频率敏感性”,该比值定义为放电变化/刺激交替频率变化,单位为冲动/刺激。频率敏感性的平均值分别为1.35冲动/刺激(静态)和0.29(动态),静态/动态比值为4.7。5. 还测定了传入纤维“稳定刺激期间的肌梭运动频率敏感性”(放电变化/持续刺激频率变化)。平均值分别为0.78(静态)和0.37(动态),静态/动态比值为2.1。6. 对矩形刺激的反应时程,静态和动态纤维在同一数量级。通过对周期直方图的上升和下降阶段拟合单指数曲线来评估。静态纤维时间常数的平均值为上升阶段58毫秒,下降阶段59毫秒;动态纤维为上升阶段34毫秒,下降阶段49毫秒。差异无统计学意义。7. 讨论了pst直方图中调制的意义以及频率敏感性差异的机制和功能含义。得出结论:在肌肉长度恒定时,静态和动态肌梭运动纤维对初级肌梭传入纤维作用的差异显著在于作用大小而非作用速度。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2620/1280568/977e72483a93/jphysiol00866-0467-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2620/1280568/977e72483a93/jphysiol00866-0467-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2620/1280568/977e72483a93/jphysiol00866-0467-a.jpg

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