Lammel E
Biophys J. 1981 Dec;36(3):533-53. doi: 10.1016/S0006-3495(81)84751-0.
Voltage-clamp analysis of membrane currents in multicellular muscle preparations by means of the sucrose gap method is complicated by diffusion of saline and sucrose in the interstitial fluid spaces. This paper is the first part of a theoretical study made to analyze electrical events related to this diffusion process. Concentration profiles of ions and sucrose (both axial and radial) were computed by solving diffusion equations with boundary conditions appropriate for the different types of preparations and experimental arrangements used. In addition to steady-state solutions, analytical expressions were derived that describe the time-course with which concentration profiles become established after a stepwise change of the solute concentration in one of the compartments of the sucrose gap apparatus. The model accounts for the presence of an endothelial surface layer, or endocardium, which acts as an external diffusion barrier and is important in determining concentration gradients of solutes within heart cell preparations. Results of numerical computations dealing with several cases of experimental interest are presented.
采用蔗糖间隙法对多细胞肌肉制剂中的膜电流进行电压钳分析时,由于盐水和蔗糖在组织间隙中的扩散而变得复杂。本文是一项理论研究的第一部分,旨在分析与该扩散过程相关的电事件。通过求解具有适合不同类型制剂和实验安排的边界条件的扩散方程,计算了离子和蔗糖的浓度分布(轴向和径向)。除了稳态解之外,还推导了分析表达式,这些表达式描述了在蔗糖间隙装置的一个隔室中溶质浓度发生逐步变化后浓度分布建立的时间过程。该模型考虑了内皮表面层或心内膜的存在,它作为外部扩散屏障,在确定心脏细胞制剂中溶质的浓度梯度方面很重要。给出了处理几种具有实验意义情况的数值计算结果。