Gilai A
J Gen Physiol. 1976 Mar;67(3):343-67. doi: 10.1085/jgp.67.3.343.
In tubular muscle fibers of the yellow scorpion the transverse tubules are arranged in a radial symmetry. This particular morphology, enables one to derive values for electrical components of one transverse tubule (TT) by treating the TT as a core conductor rather than a complex network. The electrical properties of tubular muscle fibers were completely characterized and analyzed by measuring two independent functions of frequency, i.e., the characteristic impedance and the propagation function. The impedance of a single tubular muscle fiber was determined with microelectrodes over the frequency range 1 Hz to 1.5 kHz. The results were fitted to a possible equivalent circuit model which is based on morphological evidence. The average component values for this model are: Ri = 209 omega-cm, Rm, and RT = 980 omega-cm2 (referred to unit area of surface membrane), Cm and CT = 0.9 muF/cm2, and RL = 103 omega-cm. Relating the equivalent circuit to ultrastructure shows that the average component values are consistent with the hypothesis that the TT is open to the extracellular medium, the electrical capacity of surface and TT membranes is about 1 muF/cm2, and the spread of surface depolarization into the TT is attenuated by about 25%.
在黄蝎的管状肌纤维中,横小管呈放射状对称排列。这种特殊的形态使得人们可以将横小管视为一个核心导体而非复杂网络,从而得出单个横小管(TT)电学元件的值。通过测量频率的两个独立函数,即特性阻抗和传播函数,对管状肌纤维的电学特性进行了全面表征和分析。在1赫兹至1.5千赫兹的频率范围内,用微电极测定了单个管状肌纤维的阻抗。结果被拟合到一个基于形态学证据的可能等效电路模型中。该模型的平均元件值为:Ri = 209Ω·cm,Rm和RT = 980Ω·cm²(相对于表面膜单位面积),Cm和CT = 0.9μF/cm²,RL = 103Ω·cm。将等效电路与超微结构相关联表明,平均元件值与以下假设一致:横小管与细胞外介质相通,表面膜和横小管膜的电容约为1μF/cm²,表面去极化向横小管内的传播衰减约25%。