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Some limitations of the double sucrose gap and its use in a study of the slow outward current in mammalian ventricular muscle. With an Appendix

机译:双蔗糖间隙的某些局限性及其在研究哺乳动物心室肌缓慢外向电流方面的应用。附附录

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摘要

1. A double sucrose gap method to clamp small bundles (diameter 0·8-1·2 mm) of sheep or calf ventricular fibres is described.2. Comparison between micro-electrode recordings from the central gap and the externally recorded potentials showed good agreement between the time course and amplitude of the action potentials. The rapid sodium inward current was not controlled on depolarizing clamp steps. On repolarization, control was obtained within 20 msec. The method is regarded as only suitable for a study of slow currents.3. During clamps of several seconds duration slow changes in outward current can be demonstrated. The potential, where the instantaneous current—voltage relationship crosses the voltage axis, shifted in a positive direction as the clamp duration was increased (clamp amplitude constant), and did not alter much if the clamp amplitude was increased while the duration remained constant. For these reasons it is concluded that K ions accumulate round the cells.4. A comparison between the instantaneous current—voltage relationship in various K solutions and after a depolarizing clamp, showed that an increase in external K could not exactly mimic the changes during a clamp. Because of this, a conductance change, unrelated to accumulation, is also postulated.5. To measure the influence of the slowly increasing outward current during an action potential, slowly increasing inward current (to reduce net outward current) was applied during an action potential and the prolongation of the action potential measured. In the same experiment the increase in outward current during a clamp in a solution with tetrodotoxin and Mn was measured. From these experiments it is concluded that the slow increase in outward current does not contribute much to repolarization in sheep or calf.6. Equations are derived for the voltage distribution and leakage current in the double sucrose gap. From the equations it is possible to calculate an optimal gap width. Too small a gap causes the membrane current to be swamped by the leakage current. Too wide a gap gives unequal potential distribution.
机译:1.描述了一种双蔗糖间隙法,用于夹住绵羊或小腿心室纤维的小束(直径0·8-1·2 mm)。2。从中心间隙的微电极记录与外部记录的电势之间的比较表明,时间过程和动作电势的幅度之间具有良好的一致性。快速的钠流入电流在去极化钳位步骤中不受控制。在重新极化时,在20毫秒内获得了控制。该方法被认为仅适用于慢电流研究。3。在持续几秒钟的钳位期间,可以证明向外电流的缓慢变化。随着钳位持续时间的增加(钳位幅度常数),瞬时电流与电压的关系与电压轴交叉的电位沿正方向移动,如果钳位幅度增加而持续时间不变,则电位不会发生太大变化。由于这些原因,可以得出结论,钾离子在细胞周围积累。4。比较各种K解决方案中的瞬时电流与电压的关系以及去极化钳位后的情况,结果表明,外部K的增加不能精确地模拟钳位期间的变化。因此,还假定了与蓄积无关的电导变化5。为了测量动作电位期间缓慢增加的向外电流的影响,在动作电位期间施加缓慢增加的向内电流(以减少净向外电流),并测量动作电位的延长。在同一实验中,测量了在夹持含有河豚毒素和Mn的溶液期间向外电流的增加。从这些实验得出的结论是,向外电流的缓慢增加对绵羊或小牛的复极作用不大。6。导出了双蔗糖间隙中的电压分布和泄漏电流的方程式。根据这些方程,可以计算出最佳的间隙宽度。间隙太小会导致膜电流被泄漏电流淹没。间隙太大会导致电位分布不均。

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