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By N. Ghista Dhanjoo, Eddie Yin-kwee Ng

For the 1st time, this precious publication indicates how cardiac perfusion and pumping could be quantified and correlated. Self-contained and unified in presentation, the reasons within the compendium are precise adequate to seize the reader s interest and entire adequate to supply the history fabric to discover extra into the topic. Mathematically rigorous and clinically orientated, the booklet is a tremendous source for biomedical engineers, cardiologists, cardiac surgeons and clinicians. for college kids, it's an incredible textbook for senior-level classes in cardiovascular engineering.

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Extra resources for Cardiac perfusion and pumping engineering

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After application of LAD perfusion pressure, the great cardiac vein (GCV) flow was absent for 1 or 2 s, indicating that UV was not filled yet. Then, the GCV flow resumed and gradually increased, indicating filling of UV. It is noticeable that the LAD flow was significantly higher in UV-unfilled conditions than in UV-filled conditions. This is physiologically important as a biomechanical feedback mechanism that pooled blood volume in the capacitance vessels exceeding UV reduces coronary arterial inflow. June 6, 2007 6:7 WSPC/SPI-B421 Cardiac Perfusion and Pumping Engineering ch01 Physiomics of Myocardial Perfusion and Pumping 11 Fig.

Kajiya, Transmural microcirculatory blood flow distribution in right and left ventricular free walls of rabbits, American Journal of Physiology 277 (1999) H183–191. 15. R. E. Austin, Jr, N. G. Smedira, T. M. Squiers, and J. I. Hoffman, Influence of cardiac contraction and coronary vasomotor tone on regional myocardial blood flow, American Journal of Physiology 266, 6 Pt 2 (1994) H2542–2553. 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.

Mohri, J. Shimizu, T. Ohe, and F. Kajiya, Direct observation of epicardial coronary capillary hemodynamics during reactive hyperemia and during adenosine administration by intravital videomicroscopy, American Journal of Physiology 288, 3 (2005) H1437–1443. 13. T. Matsumoto, M. Goto, H. Tachibana, Y. Ogasawara, K. Tsujioka, and F. Kajiya, Microheterogeneity of myocardial blood flow in rabbit hearts during normoxic and hypoxic states, American Journal of Physiology 270 (1996) H435–441. June 6, 2007 6:7 WSPC/SPI-B421 Cardiac Perfusion and Pumping Engineering ch01 Physiomics of Myocardial Perfusion and Pumping 15 14.

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