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首页> 外文期刊>Journal of cardiovascular electrophysiology >Quantitative reconstruction of cardiac electromechanics in human myocardium: assembly of electrophysiologic and tension generation models.
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Quantitative reconstruction of cardiac electromechanics in human myocardium: assembly of electrophysiologic and tension generation models.

机译:人心肌中心脏机电的定量重建:电生理和张力产生模型的组装。

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摘要

INTRODUCTION: Myocytes from normal and failing myocardium show significant differences in electromechanical behavior. Mathematical modeling of the behavior provides insights into the underlying physiologic and pathophysiologic mechanisms. Electromechanical models of cardiomyocytes exist for various species, but models of human myocytes are lacking. METHODS AND RESULTS: A mathematical model of electromechanics in normal and failing cardiac myocytes in humans was created by assembly and adaptation of parameters of an electrophysiologic model at the level of single cells and a force development model at the level of the sarcomere. The adaptation was performed using data from recent studies of ventricular myocytes and myocardium. The model was applied to quantitatively reconstruct measurement data from different experimental studies of normal and failing myocardium. Several simulations were performed to quantify the transmembrane voltage Vm, intracellular concentration of calcium[Ca2+]i, the [Ca2+]i-force relationship, and force transients. Furthermore, frequency dependencies and restitution of action voltage duration to 90% recovery APD90, peak [Ca2+]i, duration to 50% force recovery FD50, and peak force were determined. CONCLUSION: The presented mathematical model was capable of quantitatively reconstructing data obtained from different studies of electrophysiology and force development in normal and failing myocardium of humans. In future work, the model can serve as a component for studying macroscopic mechanisms of excitation propagation, metabolism, and electromechanics in human myocardium.
机译:简介:正常和衰竭心肌的心肌细胞在机电行为方面显示出显着差异。行为的数学模型提供了对潜在的生理和病理生理机制的见解。存在用于各种物种的心肌细胞的机电模型,但是缺乏人类心肌细胞的模型。方法和结果:通过组装和调整单细胞水平的电生理模型参数和肌小节水平的力发展模型的参数,建立了人体正常和衰竭心肌细胞的机电数学模型。使用最近对心室肌细胞和心肌的研究数据进行适应。该模型用于从正常和衰竭心肌的不同实验研究中定量重建测量数据。进行了一些模拟,以量化跨膜电压Vm,细胞内钙[Ca2 +] i的浓度,[Ca2 +] i-力的关系以及力的瞬变。此外,确定了频率依赖性和动作电压恢复至90%恢复的APD90,峰值[Ca2 +] i,恢复至50%力恢复FD50的持续时间以及峰值力。结论:所提出的数学模型能够定量重建从正常和衰竭心肌的电生理学和力量发展的不同研究获得的数据。在将来的工作中,该模型可以用作研究人心肌中的激励传播,代谢和机电机制的宏观机制。

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