Download Cardiac perfusion and pumping engineering by N. Ghista Dhanjoo, Eddie Yin-kwee Ng PDF

By N. Ghista Dhanjoo, Eddie Yin-kwee Ng

For the 1st time, this important ebook indicates how cardiac perfusion and pumping should be quantified and correlated. Self-contained and unified in presentation, the reasons within the compendium are specified sufficient to catch the reader s interest and whole sufficient to supply the historical past fabric to discover additional into the topic. Mathematically rigorous and clinically orientated, the publication is an important source for biomedical engineers, cardiologists, cardiac surgeons and clinicians. for college students, it truly is an incredible textbook for senior-level classes in cardiovascular engineering.

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Cardiac perfusion and pumping engineering

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Ogasawara, Intramyocardial influences on blood flow distributions in the myocardial wall, Ann Biomed Eng 28, 8 (Review) (2000) 897–902. 9. E. Toyota, Y. Ogasawara, O. Hiramatsu, H. Tachibana, F. Kajiya, S. Yamamori, and W. M. Chilian, The dynamics of flow velocities in endocardial and epicardial coronary arterioles, American Journal of Physiology 288, 4 (2005) H1598–1603. 10. E. Toyota, K. Fujimoto, Y. Ogasawara, T. Kajita, F. Shigeto, T. Matsumoto, M. Goto, and F. Kajiya, Dynamic changes in three-dimensional architecture and vascular volume of transmural coronary microvasculature between diastolic- and systolic-arrested rat hearts, Circulation 105, 5 (2002) 621–626.

16. P. Bruinsma, T. Arts, J. Dankelman, and J. A. Spaan, Model of coronary circulation based on pressure dependence of coronary resistance and compliance, Basic Research in Cardiology 83, 5 (1988) 510–524. 17. S. Ohta, Y. Ogasawara, T. Matsumoto, O. Hiramatsu, H. Nakamoto, T. Okamoto, and F. Kajiya, Analysis of coronary haemodynamics by coronary circulation model with three layered myocardium, IEEE Computers in Cardiology (1995) 673–677. 18. R. Krams, P. Sipkema, and N. Westerhof, Varying elastance concept may explain coronary systolic flow impediment, American Journal of Physiology 257, 26 (1989) H1471–1479.

M. Goto, T. Yada, E. Toyota, T. Matsumoto, O. Hiramatsu, Y. Ogasawara, K. Tsujioka and T. Okamoto for their collaboration of studies. Thanks are also given to Ms. H. Izushi, E. Nawachi and K. Yoshioka for their help in the preparation of this manuscript. This study was partly supported by Grants-in-Aid for Scientific Research from the Ministry of Education, Science, Technology, Sports and Culture (S and A), and the Research Grant for Cardiovascular Diseases (14-1) from the Ministry of Health, Labor and Welfare.

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