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An Assessment of the Double Sucrose-Gap Voltage Clamp Technique as Applied to Frog Atrial Muscle

机译:双重蔗糖间隙电压钳技术在青蛙心房肌中的应用评估

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摘要

The homogeneity of voltage clamp control in small bundles of frog atrial tissue under double sucrose-gap voltage clamp conditions was assessed by intracellular microelectrode potential measurements from cells in the test node region. The microelectrode potential measurements demonstrated that (1) good voltage control of the impaled cell existed in the absence of the excitatory inward currents (e.g., during small depolarizing clamp pulses of 10-15 mV), (2) voltage control of the impaled cell was lost during either the fast or slow excitatory inward currents, and (3) voltage control of the impaled cell was regained following the inward excitatory currents. Under nonvoltage clamp conditions the transgap recorded action potential had a magnitude and waveform similar to the intracellular microelectrode recorded action potentials from cells in the test node. Transgap impedance measured with a sine-wave voltage of 1,000 Hz was about 63% of that measured either by a sine-wave voltage of 10 Hz or by an action potential method used to determine the longitudinal resistance through the sucrose-gap region. The action potential data in conjunction with the impedance data indicate that the extracellular resistance (Rs) through the sucrose gap is very large with respect to the longitudinal intracellular resistance (Ri); the frequency dependence of the transgap impedance suggests that at least part of the intracellular resistance is paralleled by a capacitance. The severe loss of spatial voltage control during the excitatory inward current raises serious doubts concerning the use of the double sucrose-gap technique to voltage clamp frog atrial muscle.
机译:通过在测试节点区域内的细胞内微电极电势测量,评估了双蔗糖间隙电压钳制条件下青蛙心房组织小束中电压钳制控制的均匀性。微电极电势测量表明:(1)在没有兴奋性内向电流的情况下(例如,在10-15 mV的小去极化钳位脉冲期间)存在对穿刺电池的良好电压控制,(2)对穿刺电池的电压控制为在快速或缓慢的兴奋性内向电流过程中失去了能量损失;(3)在向内的兴奋性电流之后重新获得了刺穿细胞的电压控制。在非电压钳位条件下,transgap记录的动作电位的大小和波形类似于测试节点中来自细胞内的细胞内微电极记录的动作电位。用1,000 Hz正弦波电压测得的Transgap阻抗约为通过10 Hz正弦波电压测得或通过用于确定通过蔗糖间隙区域的纵向电阻的动作电位法测得的Transgap阻抗的63%。动作电位数据与阻抗数据一起表明,相对于纵向细胞内电阻(Ri),通过蔗糖间隙的细胞外电阻(Rs)非常大。 Transgap阻抗的频率依赖性表明,至少部分细胞内电阻与电容并联。在兴奋性内向电流过程中,空间电压控制的严重丧失使人们对使用双蔗糖间隙技术对青蛙心房肌电压进行钳制产生了严重的疑问。

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