Mobley B A, Leung J, Eisenberg R S
J Gen Physiol. 1974 May;63(5):625-37. doi: 10.1085/jgp.63.5.625.
Longitudinal impedance of skinned muscle fibers was measured with extracellular electrodes and an oil gap method in which a central longitudinal section of fiber is insulated by oil while the ends of the fiber are bathed in conducting pools of relaxing solution. Intact single fibers were isolated from frog semitendinosus muscle and the sarcolemma removed either by mechanical or chemical methods. Stray capacitance across the oil gap was measured after each experiment and its admittance subtracted from the admittance of the fiber and oil gap. Effects of impedance at the ends of the fiber were eliminated by measuring the impedance with two lengths of fiber in the oil gap and subtracting the impedance at the shorter length from that at the longer length. Longitudinal impedance so determined for mechanically and chemically skinned fibers exhibited zero phase shift from 1 to 10,000 Hz, i.e., the longitudinal impedance of skinned fibers is purely resistive. If we assume that our skinned fibers are a model of the sarcoplasm of muscle, we conclude that the equivalent circuit of the sarcoplasm is a resistor.
采用细胞外电极和油隙法测量了去膜肌纤维的纵向阻抗。在油隙法中,纤维的中央纵向部分被油绝缘,而纤维两端浸浴在含有松弛溶液的导电池中。从青蛙半腱肌中分离出完整的单根纤维,通过机械或化学方法去除肌膜。每次实验后测量油隙的杂散电容,并从纤维和油隙的导纳中减去其导纳。通过测量油隙中两种长度纤维的阻抗,并从较长长度纤维的阻抗中减去较短长度纤维的阻抗,消除了纤维末端阻抗的影响。通过这种方法确定的机械去膜和化学去膜纤维的纵向阻抗在1至10,000 Hz范围内呈现零相位偏移,即去膜纤维的纵向阻抗纯粹是电阻性的。如果我们假设我们的去膜纤维是肌肉肌浆的模型,我们可以得出结论,肌浆的等效电路是一个电阻器。