인간 심실모델에서의 혈류역학 해석

Computational analysis of hemodynamics in a human ventricular model

  • 심은보 (강원대학교 기계메카트로닉스공학부) ;
  • 권순성 (강원대학교 기계메카트로닉스공학부 대학원) ;
  • 김유석 (강원대학교 기계메카트로닉스공학부 대학원) ;
  • 전형민 (강원대학교 기계메카트로닉스공학부 대학원)
  • 발행 : 2007.05.30

초록

A 3D human ventricular model is proposed to simulate an integrative analysis of heart physiology and blood hemodynamics. This consists of the models of electrophysiology of human cells, electric wave propagation of tissue, heart solid mechanics, and 3D blood hemodynamics. The 3D geometry of human heart is discretized to a finite element mesh for the simulation of electric wave propagation and mechanics of heart. In cellular level, excitations by action potential are simulated using the existing human model. Then the contraction mechanics of a whole cell is incorporated to the excitation model. The excitation propagation to ventricular cells are transiently computed in the 3D cardiac tissue using a mono-domain method of electric wave propagation in cardiac tissue. Blood hemodynamics in heart is also considered and incorporated with muscle contraction. We use a PISO type finite element method to simulate the blood hemodynmaics in the human ventricular model.

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