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Tissue Engineering (Principles and Applications in Engineering), 1e |
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Book Description A volume in the new Principles and Applications in Engineering series, Tissue Engineering provides an overview of the major physiologic systems of current interest to biomedical engineers: cardiovascular, endocrine, nervous, visual, auditory, gastrointestinal, and respiratory. It contains useful definitions, tables of basic physiologic data, and an introduction to the literature. Then the book reviews the status of tissue engineering of specific organs, including bone marrow, skeletal muscle, and cartilage. Readers will acquire a good understanding of the engineering and cell biological fundamentals of tissue engineering and will develop ideas for further development of this emerging and important field.
Book Info Handbook reviews the major physiologic systems of current interest to biomedical engineers: cardiovascular, endocrine, nervous, visual, auditory, gastrointestinal, and respiratory. Material was originally published in Volume 2 of The Biomedical Engineering Handbook, Second Edition (CRC Press, 2000).
From the Back Cover This book -the first in its field- lays the foundation for individuals studying tissue engineering. It provides a conceptual framework that includes exposure to all the necessary background material in all areas. A four-part presentation covers quantitative cell and tissue biology, cell and tissue characterization, engineering methods and design, and clinical implementation. For cell culture scientists and engineers. --This text refers to the Paperback edition.
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SECTION I Physiologic Systems
Introduction, R. Plonsey
An Outline of Cardiovascular Structure and Function, D.J. Schneck
Endocrine System, D.G. Cramp, E.R. Carson
Nervous System, E. Micheli-Tzanakou
Vision System, G. Stetten
Auditory System, B.M. Clopton, F.A. Spelman
Gastrointestinal System, B.L. Bardakjian
Respiratory System, A.T. Johnson, C.G. Lausted, J.D. Bronzino
SECTION II Tissue Engineering
Introduction, B.O. Palsson, J.A. Hubbell
Fundamentals of Tissue Engineering, F. Berthiaume, M.L. Yarmush
Surface Immobilization of Adhesion Ligands for Investigations of Cell-Substrate Interactions, P.D. Drumheller, J.A. Hubbell
Biomaterials: Protein-Surface Interactions, J.A. Chinn, S.M. Slack
Engineering Biomaterials for Tissue Engineering: The 10–100 Micron Size Scale, D.J. Mooney, R.S. Langer
Regeneration Templates, I.V. Yannas
Fluid Shear Stress Effects on Cellular Function, C.W. Patrick, Jr., R. Sampath, L.V. McIntire
The Roles of Mass Transfer in Tissue Function, E.N. Lightfoot, K.A. Duca
The Biology of Stem Cells, C.T. Jordan, G. Van Zant
Cell Motility and Tissue Architecture, G.A. Dunn
Tissue Microenvironments, M.W. Long
The Importance of Stromal Cells, B.A. Naughton
Tissue Engineering of Bone Marrow, M.R. Koller, B.O. Palsson
Tissue Engineering of the Liver, T.H. Kim, J.P. Vacanti
Tissue Engineering in the Nervous System, R. Bellamkonda, P. Aebischer
Tissue Engineering of Skeletal Muscle, S.V. Brooks, J.A. Faulkner
Tissue Engineering of Cartilage, L.E. Freed, G. Vunjak-Novakovic
Tissue Engineering of the Kidney, H.D. Humes
Index |
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