A Simulation of the Myocardium Activation Process using the Discrete Event Cell Space Model

DEVCS 모델을 사용한 심근 활성화과정의 시뮬레이션

  • 김광년 (동아대학교 의과대학 의공학교실) ;
  • 정동근 (동아대학교 의과대학 의공학교실) ;
  • 김기련 (동아대학교 의과대학 의공학교실) ;
  • 최병철 (춘해대학 의료공학과) ;
  • 이정태 (부산대학교 컴퓨터공학과) ;
  • 전계록 (부산대학교 의과대학 의공학교실)
  • Published : 2004.12.01

Abstract

The modelling and simulation of the activation process for the heart system is meaningful to understand special excitatory and conductive system in the heart and to study cardiac functions because the heart activation conducts through this system. This thesis proposes two dimensional cellular automaton(CA) model for the activation process of the myocardium and conducted simulation by means of discrete time and discrete event algorithm. In the model, cells are classified into anatomically similar characteristic parts of the heart and each of cells has a set of cells with preassigned properties. Each cell in this model has state variables to represent the state of the cell and has some state transition rules to change values of state variables executed by state transition function. The state transition rule is simple as follows. First, the myocardium cell at rest stay in passive state. Second, if any one of neighborhood cell in the myocardium cell is active state then the state is change from passive to active state. Third, if cell's state is an active then automatically go to the refractory state after activation phase. Four, if cell's state is refractory then automatically go to the passive state after refractory phase. These state transition is processed repeatedly in all cells through the termination of simulation.

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