A Closed-Loop Lumped Parameter Computational Model for Human Cardiovascular System(<Special Issue>Bioengineering)
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概要
- 論文の詳細を見る
For purpose of a better understanding of the behavior of the global hemodynamic interactions, a closed-loop lumped parameter computational model was developed for the human cardiovascular system with a detailed compartmental description of the heart and the main vascular circulations. Construction of the model was implemented based on a phenomenological characterization of hemodynamics using an electrical analog method and solution of the governing differential equations of the model was carried out by use of a fourth-order Runge-Kutta method. Most of the hemodynamic parameters predicted by the present model were either consonant with the clinical measurements or within reasonable physiological ranges. Furthermore, the present model was applied to predict the clinical cardiac hemodynamic characteristics observed in patients with heart abnormalities. Reasonable agreements between predictions and measurements indicate that the present computational model can serve as a useful assistant tool for computer-aided diagnosis and surgical treatment, as well as posttreatment prediction.
- 一般社団法人日本機械学会の論文
- 2005-12-15
著者
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Liu Hao
Department Of Applied Chemistry Seikei University
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Liang Fuyou
千葉大学 自然科学研究科
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Liang Fuyou
Graduate School Of Science And Technology Chiba University
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Liu Hao
Department of Electronics and Mechanical Engineering, Chiba University
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