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An equivalent circuit for small atrial trabeculae of frog.

机译:青蛙的小房小梁的等效电路。

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摘要

An equivalent electrical circuit has been constructed for small atrial trabecula of frog in a double sucrose gap voltage clamp apparatus. The basic strategy in constructing the circuit was to derive the distribution of membrane capacitance and extracellular resistance from the preparation's response to small voltage displacements near the resting condition, when the membrane conductance is presumably quite low. Then standard Hodgkin-Huxley channels were placed in parallel with the capacitance and the results of voltage clamp experiments were simulated. The results suggest that the membranes of the preparation cannot in fact be clamped near the control voltage nor can the ionic currents be measured directly with reasonable accuracy by axon standards. It may or may not be a realizable goal in the future to define the preparation's electrical behavior well enough to permit the ultimate quantitative description of the membrane's specific ion conductances. The result of this paper suggest that if this goal is achieved using the double sucrose gap voltage clamp, it will be by a detailed quantitative accounting for substantial irreducible errors in voltage control, rather than by experimental achievement of good voltage control.
机译:在双蔗糖间隙电压钳位装置中已经为青蛙的小房小梁构造了等效电路。构造电路的基本策略是,在膜电导率很低的情况下,根据制剂对静止状态下小电压位移的反应,得出膜电容和细胞外电阻的分布。然后将标准的Hodgkin-Huxley通道与电容并联放置,并模拟电压钳实验的结果。结果表明,制剂的膜实际上不能被钳制在控制电压附近,离子流也不能通过轴突标准品以合理的精度直接测量。将来,将制剂的电性能定义得足够好以允许最终定量描述膜的特定离子电导率可能不是实现目标。本文的结果表明,如果使用双蔗糖间隙电压钳实现这一目标,则将通过详细定量考虑电压控制中的大量不可减少的误差,而不是通过良好的电压控制的实验成果来实现。

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