A method to evaluate relevance of hemodynamic factors to artery bifurcation shapes using computational fluid dynamics and genetic algorithms
Author:
Affiliation:
1. Advanced Center for Computing and Communication
2. Graduate School of Engineering, Hokkaido University
3. Center of Advanced Photonics, RIKEN
Publisher
Japan Society of Mechanical Engineers
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/mej/4/3/4_16-00476/_pdf
Reference35 articles.
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2. Bijari, P. B., Antiga, L., Gallo, D., Wasseman, B. A. and Steinman, D. A., Improved prediction of disturbed flow via hemodynamically-inspired geometric variables, Journal of Biomechanics, (2012) 45(9), pp. 1632-1637.
3. Canham, P. B., Finlay, H. M., Dixon, J. G., Boughner, D. R., and Chen, A. Measurements from light and polarised light microscopy of human coronary arteries fixed at distending pressure. Cardiovascular Research (1989) 23:973-982.
4. Chiu, J. J., Chen, L. J., Chen, C. N., Lee, P. L. and Lee, C. I., A model for studying the effect of shear stress on interactions between vascular endothelial cells and smooth muscle cells, Journal of Biomechanics, (2004) Vol. 37, pp. 531-539.
5. Chiu, J-J. and Chien, S., Effect of Disturbed flow on vascular endothelium: Pathophysiological basis and clinical perspectives, Physiological Reviews (2011) No. 91, pp. 327-387.
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