Kauffman J W, Mead C A
Biophys J. 1970 Nov;10(11):1084-9. doi: 10.1016/S0006-3495(70)86354-8.
Current-voltage characteristics and the conductivity temperature dependence of sphingomyelin bilayer membranes have been determined. The resistances were of the order of 10(8) Omega-cm(2) and exhibited ohmic behavior up to approximately 25 mv followed by increasing conductivity with applied voltage. The current is found to be proportional to a hyperbolic sine function of the voltage. The temperature dependence indicates a thermally activated conduction mechanism. The observed behavior closely follows a kinetic model involving a barrier modified by the applied electric field, the rate-limiting process being the surmounting of the barrier by the impinging ions. The model allows predictions to be made over a wide range of conditions.
已测定了鞘磷脂双层膜的电流-电压特性及电导率与温度的关系。电阻约为10⁸Ω·cm²,在约25毫伏以下呈现欧姆行为,随后随着施加电压电导率增加。发现电流与电压的双曲正弦函数成正比。温度依赖性表明存在热激活传导机制。观察到的行为紧密遵循一个动力学模型,该模型涉及由施加电场修改的势垒,限速过程是撞击离子越过势垒。该模型允许在广泛的条件下进行预测。