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9780071663977

Transport Phenomena in Biomedical Engineering: Artificial organ Design and Development, and Tissue Engineering

by
  • ISBN13:

    9780071663977

  • ISBN10:

    0071663975

  • Edition: 1st
  • Format: Hardcover
  • Copyright: 2010-05-05
  • Publisher: McGraw-Hill Education
  • Purchase Benefits
List Price: $172.00
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Summary

In-depth coverage of the flow of body fluids, drug delivery systems, artificial organ design, and human tissue engineeringTransport Phenomena in Biomedical Engineering: Artificial Organ Design and Development, and Tissue Engineeringprovides a comprehensive examination of fluid mechanics within living organisms. In order to construct artificial organs, physiological systems of humans must be analyzed and understood. These include heat conduction, convection, fluid flow and pressure drop in the flow of blood, oxygen transport, and other systems. This book thoroughly covers each system and phenomenon.Transport Phenomena in Biomedical Engineeringfeatures: Comprehensive and interdisciplinary coverage of fluid mechanics, heat transfer, and thermodynamics Thorough information on tissue engineering Worked examples and exercises illustrating the equations derived. End-of-chapter case studiesThis leading-edge work covers: Fluid Mechanics; Molecular Diffusion; Osmotic Pressure, Permeability and Solute Transport; Rheology of Blood and Transport; Gas Transport; Pharmacokinetic Analysis; Bioartificial Organs; Porous Media; Bio-Heat Transfer; Tissue Engineering; Analytical Solutions to Parabolic Partial Differential Equations; Numerical Solutions to Parabolic Partial Differential Equations

Author Biography

Author Information
Kal Renganathan Sharma, PE
teaches at Prairie View A & M University in Prairie View, Texas. He holds joint appointments as adjunct professor in three departments: Chemical Engineering; Civil and Environmental Engineering; and Mechanical Engineering. He has instructed more than 2000 students via 64 courses in the U.S. and India over the past 14 years.

Table of Contents

Chapter 1. Fundamentals of Fluid Mechanics; Chapter 2. Principles of Diffusion; Chapter 3. Osmotic Pressure, Solvent Permeability, and Solute Transport; Chapter 4. Rheology of Blood and Transport; Chapter 5. Gas Transport; Chapter 6. Pharmacokinetic Study; Chapter 7. Tissue Design; Chapter 8. Bioartificial Organ Design; Chapter 9. Bioheat Transport; Appendix A. Generalized Bessel Differential Equation; Appendix B. Inverse of Laplace Transforms

Supplemental Materials

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