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Calcium currents and conductances in the muscle membrane of the crayfish

机译:小龙虾肌肉膜中的钙电流和电导

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摘要

1. Membrane currents in calcium type muscle membrane of the cray-fish Astacus fluviatilis were analysed by a method in which a membrane microarea was isolated by circulating sucrose rings contacting the fibre perpendicular to the fibre surface.2. The early calcium inward currents were separated from the total membrane currents by subtraction of the early and delayed potassium currents from the total membrane current.3. The isolated calcium currents show a time course characteristic for a transient change of calcium conductance. The presence of inactivation was further checked by the time course of the tail currents at the end of voltage clamp pulses of variable duration.4. The reversal potential of the early calcium currents determined from the current—voltage relations was +85 ± 4·2 mV. The calcium potentials were used to express the calcium currents in the form of chord conductances.5. Calcium conductances (gCa) as functions of time and voltage were found to be described quantitatively on the assumption that gCa is determined by two variables (m and h), according to the equation gCa = m6hḡCa, where ḡCa is a constant and m and h obey first order differential equations of the Hodgkin—Huxley type.6. The activation parameters of the gCa were determined by fitting the solutions of the above equations to the experimental values of the gCa. This method was also used to check the inactivation parameters.7. The inactivation parameters of the gCa were obtained from the inactivation curves, which were determined for several membrane potentials by variation of the duration of the conditioning step.8. The average calcium conductance constants were tabulated and compared with sodium conductance constants in excitable membranes.
机译:1.用一种方法分析小龙虾Astacus fluviatilis钙型肌膜中的膜电流,该方法是通过使蔗糖环垂直于纤维表面循环接触蔗糖环来分离膜微区。通过从总膜电流中减去早期和延迟的钾电流,将早期的钙内流与总的膜电流分开。3。隔离的钙电流显示出钙电导的瞬时变化的时程特性。通过在可变持续时间的电压钳制脉冲结束时尾电流的时间进程进一步检查灭活的存在。4。由电流-电压关系确定的早期钙电流的反向电位为+85±4·2 mV。钙电势以和弦电导的形式表达钙电流。5。发现钙电导率(gCa)是时间和电压的函数,假设gCa由两个变量(m和h)确定,并根据方程式gCa = m 6 hḡCa,可以定量地描述钙电导率(gCa)。其中ḡCa是一个常数,m和h遵循霍奇金-赫克斯利类型的一阶微分方程。6。通过将上述方程的解与gCa的实验值拟合来确定gCa的激活参数。该方法还用于检查失活参数。7。从失活曲线中获得了gCa的失活参数,该曲线通过调节步骤的持续时间来确定几种膜电位。8。将平均钙电导常数制成表格,并与可激发膜中的钠电导常数进行比较。

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