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Reconstruction of the action potential of ventricular myocardial fibres

机译:心室肌纤维动作电位的重建

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摘要

1. A mathematical model of membrane action potentials of mammalian ventricular myocardial fibres is described. The reconstruction model is based as closely as possible on ionic currents which have been measured by the voltage-clamp method.2. Four individual components of ionic current were formulated mathematically in terms of Hodgkin—Huxley type equations. The model incorporates two voltage- and time-dependent inward currents, the excitatory inward sodium current, iNa, and a secondary or slow inward current, is, primarily carried by calcium ions. A time-independent outward potassium current, iK1, exhibiting inward-going rectification, and a voltage- and time-dependent outward current, ix1, primarily carried by potassium ions, are further elements of the model.3. The iNa is primarily responsible for the rapid upstroke of the action potential, while the other current components determine the configuration of the plateau of the action potential and the re-polarization phase. The relative importance of inactivation of is and of activation of ix1 for termination of the plateau is evaluated by the model.4. Experimental phenomena like slow recovery of the sodium system from inactivation, frequency dependence of the action potential duration, all-or-nothing re-polarization, membrane oscillations are adequately described by the model.5. Possible inadequacies and shortcomings of the model are discussed.
机译:1.描述了哺乳动物心室心肌纤维的膜动作电位的数学模型。重建模型尽可能基于电压钳制法测量的离子电流。2。根据Hodgkin-Huxley型方程,用数学公式表示了离子电流的四个单独成分。该模型包含了两个电压和时间相关的内向电流,即兴奋性内向钠电流iNa和次级或缓慢内向电流,主要由钙离子携带。该模型还包含一个主要由钾离子携带的,与时间无关的向外钾电流iK1,表现出向内整流,以及一个与电压和时间相关的向外电流ix1,主要由钾离子携带。 iNa主要负责动作电位的快速上升,而其他电流分量则决定了动作电位的平台状态和重新极化阶段。模型评估了is的失活和ix1的激活对高原终止的相对重要性。4。模型充分描述了失活钠系统的缓慢恢复,动作电位持续时间的频率依赖性,全有或全无极化,膜振动等实验现象。5。讨论了该模型的可能不足之处和不足之处。

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