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在斜坡-保持拉伸条件下记录的钙对离体猫肌梭初级和次级末梢放电模式的影响。

Effects of calcium on the discharge pattern of primary and secondary endings of isolated cat muscle spindles recorded under a ramp-and-hold stretch.

作者信息

Fischer M, Schafer S S

机构信息

Department of Neurophysiology (Unit 4230), Hannover Medical School, Carl-Neuberg-Str. 1, D-30625 Hannover, Germany.

出版信息

Brain Res. 2000 Sep 1;875(1-2):78-88. doi: 10.1016/s0006-8993(00)02577-4.

Abstract

The impulse activity of muscle spindles isolated from the cat tenuissimus muscle was investigated under varying concentrations of external calcium (Ca(2+)). The outer capsule of the muscle spindle represents an effective diffusion barrier for Ca(2+) ions since activity changes were strong and rapid only if the capsule was partly removed from the sensory region of the receptor. The impulse activity of both primary and secondary muscle spindle endings was lowered by an increase in the external Ca(2+) concentration from 1.8 mM (normal Ringer's solution) to 2.7 mM and raised by a decrease in the Ca(2+) concentration from 1.8 to 0.9 mM. Primary endings were generally more strongly affected than secondary endings. With primary endings the firing rate changed by 23-52% when the external Ca(2+) concentration was altered by 0.9 mM. With secondary endings the discharge frequency changed by 15-24%. The afferent discharge patterns were obtained under repetitive ramp-and-hold stretches and were analyzed with regard to influences of external Ca(2+) ions on the static and dynamic components of the endings' responses. The stretch sensitivity and the adaptive response of both types of ending increased in the low Ca(2+) solution and decreased in the high Ca(2+) solution, but a specific effect on a single component of the responses to stretch was not observed. These findings indicate an overall change in excitability when the external Ca(2+) concentration was varied. The mechanical properties of the receptor were probably not affected since changes in the Ca(2+) concentration did not elicit a contraction or relaxation of the intrafusal muscle fibers. On the one hand, the observed effects can be explained according to the surface potential theory by an indirect influence of extracellular Ca(2+) ions on ion channels of the sensory nerve terminals, with Ca(2+) ions binding to negative charged sites at the endings' outer membrane. On the other hand, the results are consistent with the supposition that Ca(2+) ions act directly on ion channels of the sensory membrane of muscle spindle endings.

摘要

研究了从猫的薄肌分离出的肌梭在不同外部钙(Ca(2+))浓度下的冲动活动。肌梭的外囊对Ca(2+)离子构成了有效的扩散屏障,因为只有当外囊部分从感受器的感觉区域移除时,活动变化才强烈且迅速。当外部Ca(2+)浓度从1.8 mM(正常林格氏溶液)增加到2.7 mM时,初级和次级肌梭末梢的冲动活动均降低;当Ca(2+)浓度从1.8 mM降低到0.9 mM时,冲动活动则升高。初级末梢通常比次级末梢受到的影响更强。对于初级末梢,当外部Ca(2+)浓度改变0.9 mM时,放电频率变化23 - 52%。对于次级末梢,放电频率变化15 - 24%。在重复性斜坡-保持拉伸下获得传入放电模式,并分析外部Ca(2+)离子对末梢反应的静态和动态成分的影响。在低Ca(2+)溶液中,两种类型末梢的拉伸敏感性和适应性反应均增加,而在高Ca(2+)溶液中则降低,但未观察到对拉伸反应单个成分的特异性影响。这些发现表明,当外部Ca(2+)浓度变化时,兴奋性发生了整体变化。感受器的机械特性可能未受影响,因为Ca(2+)浓度的变化未引起梭内肌纤维的收缩或舒张。一方面,根据表面电位理论,观察到的效应可解释为细胞外Ca(2+)离子对感觉神经末梢离子通道的间接影响,Ca(2+)离子与末梢外膜带负电荷的位点结合。另一方面,结果与Ca(2+)离子直接作用于肌梭末梢感觉膜离子通道的假设一致。

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