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Software for characterizing the ionic basis of the molluscan cardiac action potential

机译:用于表征软体动物心脏动作电位的离子基础的软件

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The goal of this modeling effort was to examine how individual membrane currents determine the repertoire of electrical signals recorded from bivalve cardiac action potentials. Software was developed in C++ (for both PC and Macintosh) and Java (Internet). A series of Hodgkin-Huxley equations described the kinetics of pacemaker activity, while a degree of customization was incorporated into the simulation, enabling the user to adjust parameters to accommodate a number of animal models. A graphical user interface was developed, suitable for demonstrating the dynamics of the system to students at the introductory level via the Internet. Modulation by molluscan neurotransmitters (5HT, FRMFamide, acetylcholine) was tested by adjustment of the respective ionic conductances. The model exhibited high sensitivity to minor alterations in model parameters and provided quantification of physiological recordings. The simulation software will be useful for developing hypotheses and interpreting experimental data, in an attempt to conduct more quantitative studies on invertebrate hearts. It is proposed that the model will be used as an educational tool for introducing ionic conductance and equilibrium potential as key components of the membrane potential in pacemaker mechanisms. This will be conducted in parallel with related animal investigations in the laboratory.
机译:该建模工作的目标是检查单个膜电流如何确定从双瓣心脏动作电位记录的电信号库。该软件是用C ++(适用于PC和Macintosh)和Java(Internet)开发的。一系列的Hodgkin-Huxley方程描述了起搏器活动的动力学,同时在模拟中加入了一定程度的自定义,从而使用户能够调整参数以适应多种动物模型。开发了图形用户界面,适合于通过互联网向入门级的学生演示系统的动态。通过调节各自的离子电导来测试软体动物神经递质(5HT,FRMFamide,乙酰胆碱)的调节作用。该模型对模型参数的细微变化表现出很高的敏感性,并提供了生理记录的量化。该仿真软件将有助于开发假设并解释实验数据,以期对无脊椎动物的心脏进行更多的定量研究。建议将该模型作为一种教育工具,用于引入离子电导和平衡电势作为起搏器机制中膜电势的关键组成部分。这将与实验室中的相关动物研究同时进行。

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