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Transport phenomena in biomedical engineering : artificial organ design and development and tissue engineering

By: Material type: TextTextPublication details: New York McGraw-Hill 2010Description: 488pISBN:
  • 9780071663977 (hb.)
Subject(s): DDC classification:
  • 610.28 SHA
Summary: "A Cutting-Edge Guide to Applying Transport Phenomena Principles to Bioengineering Systems. Transport Phenomena in Biomedical Engineering: Artificial Order Design and Development and Tissue Engineering explains how to apply the equations of continuity, momentum, energy, and mass to human anatomical systems. This authoritative resource presents solutions along with term-by-term medical significance. Worked exercises illustrate the equations derived, and detailed case studies highlight real-world examples of artificial organ design and human tissue engineering. 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"
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Item type Current library Collection Call number Status Date due Barcode
Book Book Plaksha University Library Technology 610.28 SHA (Browse shelf(Opens below)) Available 002548
Book Book Plaksha University Library Technology 610.28 SHA (Browse shelf(Opens below)) Available 002549

https://www.mhprofessional.com/9780071663977-usa-transport-phenomena-in-biomedical-engineering-artificial-organ-design-and-development-and-tissue-engineering

"A Cutting-Edge Guide to Applying Transport Phenomena Principles to Bioengineering Systems.
Transport Phenomena in Biomedical Engineering: Artificial Order Design and Development and Tissue Engineering explains how to apply the equations of continuity, momentum, energy, and mass to human anatomical systems. This authoritative resource presents solutions along with term-by-term medical significance. Worked exercises illustrate the equations derived, and detailed case studies highlight real-world examples of artificial organ design and human tissue engineering. 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"

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