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首页> 外文期刊>The Journal of general physiology >Electrical models of excitation-contraction coupling and charge movement in skeletal muscle.
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Electrical models of excitation-contraction coupling and charge movement in skeletal muscle.

机译:骨骼肌中兴奋-收缩耦合和电荷运动的电模型。

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摘要

The consequences of ionic current flow from the T system to the sarcoplasmic reticulum (SR) of skeletal muscle are examined. The Appendix analyzes a simple model in which the conductance gx, linking T system and SR, is in series with a parallel resistor and capacitor having fixed values. The conductance gx is supposed to increase rapidly with depolarization and to decrease slowly with repolarization. Nonlinear transient currents computed from this model have some of the properties of gating currents produced by intramembrane charge movement. In particular, the integral of the transient current upon depolarization approximates that upon repolarization. Thus, equality of nonlinear charge movement can occur without intramembrane charge movement. A more complicated model is used in the text to fit the structure of skeletal muscle and other properties of its charge movement. Rectification is introduced into gx and the membrane conductance of the terminal cisternae to give asymmetry in the time-course of the transient currents and saturation in the curve relating charge movement to depolarization, respectively. The more complex model fits experimental data quite well if the longitudinal tubules of the sarcoplasmic reticulum are isolated from the terminal cisternae by a substantial resistance and if calcium release from the terminal cisternae is, for the most part, electrically silent. Specific experimental tests of the model are proposed, and the implications for excitation-contraction coupling are discussed.
机译:检查了离子电流从T系统流向骨骼肌肌质网(SR)的后果。附录分析了一个简单的模型,其中连接T系统和SR的电导gx与具有固定值的并联电阻器和电容器串联。电导率gx应该随着去极化而迅速增加,而随着再极化而缓慢地降低。由该模型计算出的非线性瞬态电流具有膜内电荷运动产生的选通电流的某些特性。特别地,去极化时的瞬态电流的积分近似于再极化时的瞬态电流的积分。因此,在没有膜内电荷运动的情况下可以发生非线性电荷运动的相等。文中使用了更复杂的模型来拟合骨骼肌的结构及其电荷运动的其他属性。整流被引入到gx和末端池的膜电导中,以分别给出瞬态电流在时间过程中的不对称性和在将电荷运动与去极化相关的曲线中的饱和度。如果肌浆网的纵向小管通过实质阻力与末端池隔离,并且如果从末端池释放的钙在大多数情况下是电沉默的,则更复杂的模型将非常适合实验数据。提出了该模型的具体实验测试,并讨论了其对激励-收缩耦合的影响。

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