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首页> 外文期刊>Brain research >Effects of changes in pH on the afferent impulse activity of isolated cat muscle spindles.
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Effects of changes in pH on the afferent impulse activity of isolated cat muscle spindles.

机译:pH值变化对离体猫肌肉纺锤传入脉冲活动的影响。

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Muscle spindle activity has been shown to decrease in the sustained contracting muscle. The effect has been assumed to result from a declining fusimotor drive. Since accumulation of metabolites including H(+), lactate and CO(2) might also affect the receptor in the fatiguing muscle, the impulse activity of muscle spindles isolated from the cat tenuissimus muscle was characterized under varying degrees of extracellular pH, thus excluding any effect on fusimotor activity, blood supply and extrafusal muscle fibers. The isolated receptor was exposed to bathing fluids of pH 6.4, 7.4 and 8.4, and afferent discharge activity was recorded from the spindle nerve. Both primary and secondary endings responded similarly to changes in pH. Resting discharge frequency usually decreased with decreasing pH and increased with increasing pH. A sudden break-off in activity was observed with about 40% of primary endings and about 30% of secondary endings at pH 6.4. Experiments with slow stretch stimulation indicated that this effect was caused by a rising threshold of firing at the encoder site of the endings. With brief ramp-and-hold stretches, we tested the effects of changes in pH on the dynamic and static sensitivity of primary and secondary endings. When pH was reduced from 7.4 to 6.4, the initial burst activity at the beginning of the ramp phase increased in primary and secondary endings and the dynamic response increased in secondary endings, demonstrating that the dynamic properties of muscle spindle endings were usually augmented in the acidic milieu. The static properties rose as well because the static index of both types of ending increased significantly. By contrast, dynamic and static properties of both primary and secondary endings decreased significantly, when pH was increased from 7.4 to 8.4. The amplitude of tension that was measured during the passive stretch stimuli very slightly decreased in the acidic solution and very slightly increased in the alkaline solution. The decrease in the resting discharge activity at low pH supports those previous observations, which demonstrate a reduced peripheral input from muscle spindle afferents to the spinal motor nuclei during fatigue in the isometric contracting muscle. The present finding indicates that an attenuated afferent discharge is not only caused by a decreasing central activation of gamma-motorneurons, but may additionally be supported by a direct effect of protons on the muscle receptor itself. The accompanying augmentation of stretch sensitivity is suggested to correspond to the well-known increase in physiological tremor during exhaustive exercise.
机译:已经显示出肌肉纺锤体活动在持续收缩的肌肉中减少。假定该效果是由于融合马达驱动力下降引起的。由于包括H(+),乳酸和CO(2)在内的代谢产物的积累也可能影响疲劳肌肉中的受体,因此从猫腱鞘肌分离出的肌肉纺锤体的冲动活动在不同程度的细胞外pH值下得以表征,因此排除了对融合运动,血液供应和融合肌的影响。将分离的受体暴露于pH 6.4、7.4和8.4的沐浴液中,并记录纺锤体神经的传入放电活性。初级和次级末端对pH的变化响应相似。静息放电频率通常随pH降低而降低,随pH升高而提高。在pH 6.4时观察到活性突然中断,其中约有40%的主要末端和约30%的次要末端。缓慢拉伸刺激的实验表明,这种影响是由末端编码器位置的点火阈值升高引起的。通过短暂的倾斜和拉伸,我们测试了pH变化对主要和次要末端的动态和静态敏感性的影响。当pH从7.4降低到6.4时,斜坡阶段开始时的初始爆发活动在初级和次级末端增加,而动态响应在次级末端增加,表明肌肉纺锤末端的动态特性通常在酸性条件下增强。环境。静态属性也增加,因为两种类型的结尾的静态索引都显着增加。相比之下,当pH从7.4增加到8.4时,主要末端和次要末端的动态和静态特性均显着下降。在被动拉伸刺激过程中测得的张力幅度在酸性溶液中略有下降,而在碱性溶液中则略有上升。在低pH下静息放电活动的减少支持了以前的那些观察结果,这些观察结果表明在等轴测收缩的肌肉疲劳期间,从肌肉纺锤传入神经到脊髓运动核的外围输入减少。本发现表明衰减的传入放电不仅由γ-运动神经元的中央激活的降低引起,而且还可以通过质子对肌肉受体本身的直接作用来支持。伴随着拉伸敏感性的增加被认为与力竭运动中生理性震颤的众所周知的增加相对应。

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