Computational analysis of heart mechanics using a cell-autonomic nerve control-hemodynamic system coupled model

세포-신경계-혈류역학 시스템 통합모델에 의한 심장역학 분석

  • 전형민 (강원대학교 기계메카트로닉스공학부) ;
  • 심은보 (강원대학교 기계메카트로닉스공학부)
  • Published : 2007.05.30

Abstract

A model of the cardiovascular system coupling cell, hemodynamics and autonomic nervecontrol function is proposed for analyzing heart mechanics. We developed a comprehensive cardiovascular model with multi-physics and multi-scale characteristics that simulates the physiological events from membrane excitation of a cardiac cell to contraction of the human heart and systemic blood circulation and ultimately to autonomic nerve control. Using this model, we delineatedthe cellular mechanism of heart contractility mediated by nerve control function. To verify the integrated method, we simulated a 10% hemorrhage, which involves cardiac cell mechanics, circulatory hemodynamics, and nerve control function. The computed and experimental results were compared. Using this methodology, the state of cardiac contractility, influenced by diverse properties such as the afterload and nerve control systems, is easily assessed in an integrated manner.

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