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Heat Transfer and Fluid Flow in Biological Processes covers emerging areas in fluid flow and heat transfer relevant to biosystems and medical technology. This book uses an interdis… Read more
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Immediately download your ebook while waiting for your print delivery. No promo code needed.
Heat Transfer and Fluid Flow in Biological Processes covers emerging areas in fluid flow and heat transfer relevant to biosystems and medical technology. This book uses an interdisciplinary approach to provide a comprehensive prospective on biofluid mechanics and heat transfer advances and includes reviews of the most recent methods in modeling of flows in biological media, such as CFD. Written by internationally recognized researchers in the field, each chapter provides a strong introductory section that is useful to both readers currently in the field and readers interested in learning more about these areas.
Heat Transfer and Fluid Flow in Biological Processes is an indispensable reference for professors, graduate students, professionals, and clinical researchers in the fields of biology, biomedical engineering, chemistry and medicine working on applications of fluid flow, heat transfer, and transport phenomena in biomedical technology.
Graduate students, professors, and clinical researchers and professionals whose work relates to fluid flow, heat transfer, and mass transport across the biological, biomedical sciences, and engineering fields.
Chapter 1: Bioheat Transfer and Thermal Heating for Tumor Treatment
Chapter 2: Tissue Response to Short Pulse Laser Irradiation
Chapter 3: Quantitative Models of Thermal Damage to Cells and Tissues
Chapter 4: Analytical Bioheat Transfer: Solution Development of the Pennes’ Model
Chapter 5: Characterizing Respiratory Airflow and Aerosol Condensational Growth in Children and Adults Using an Imaging-CFD Approach
Chapter 6: Transport in the Microbiome
Chapter 7: A Critical Review of Experimental and Modeling Research on the Leftward Flow Leading to Left-Right Symmetry Breaking in the Embryonic Node
Chapter 8: Fluid-Biofilm Interactions in Porous Media
Chapter 9: Flow Through a Permeable Tube
Chapter 10: Transdermal Drug Delivery and Percutaneous Absorption: Mathematical Modeling Perspectives
Chapter 11: Mechanical Stress Induced Blood Trauma
Chapter 12: Modeling of Blood Flow in Stented Coronary Arteries
Chapter 13: Hemodynamics in the Developing Cardiovascular System
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