Mikulecky D C, Huf E G, Thomas S R
Biophys J. 1979 Jan;25(1):87-105. doi: 10.1016/s0006-3495(79)85279-0.
We introduce a general network thermodynamic method for compartmental analysis which uses a compartmental model of sodium flows through frog skin as an illustrative example (Huf and Howell, 1974a). We use network thermodynamics (Mikulecky et al., 1977b) to formulate the problem, and a circuit simulation program (ASTEC 2, SPICE2, or PCAP) for computation. In this way, the compartment concentrations and net fluxes between compartments are readily obtained for a set of experimental conditions involving a square-wave pulse of labeled sodium at the outer surface of the skin. Qualitative features of the influx at the outer surface correlate very well with those observed for the short circuit current under another similar set of conditions by Morel and LeBlanc (1975). In related work, the compartmental model is used as a basis for simulation of the short circuit current and sodium flows simultaneously using a two-port network (Mikulecky et al., 1977a, and Mikulecky et al., A network thermodynamic model for short circuit current transients in frog skin. Manuscript in preparation; Gary-Bobo et al., 1978). The network approach lends itself to computation of classic compartmental problems in a simple manner using circuit simulation programs (Chua and Lin, 1975), and it further extends the compartmental models to more complicated situations involving coupled flows and non-linearities such as concentration dependencies, chemical reaction kinetics, etc.
我们介绍一种用于房室分析的通用网络热力学方法,该方法以钠流经蛙皮的房室模型为例(胡夫和豪厄尔,1974a)。我们使用网络热力学(米库莱茨基等人,1977b)来阐述问题,并使用电路模拟程序(ASTEC 2、SPICE2或PCAP)进行计算。通过这种方式,对于涉及皮肤外表面标记钠方波脉冲的一组实验条件,很容易获得各房室的浓度以及房室之间的净通量。外表面钠流入的定性特征与莫雷尔和勒布朗(1975)在另一组类似条件下观察到的短路电流的定性特征非常吻合。在相关工作中,房室模型被用作使用双端口网络同时模拟短路电流和钠流的基础(米库莱茨基等人,1977a,以及米库莱茨基等人,《蛙皮短路电流瞬变的网络热力学模型》。正在准备的手稿;加里 - 博博等人,1978)。网络方法便于使用电路模拟程序以简单的方式计算经典的房室问题(蔡和林,1975),并且它进一步将房室模型扩展到更复杂的情况,包括耦合流和非线性,如浓度依赖性、化学反应动力学等。