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Mechanics of biomaterials :

by Pruitt, Lisa A.
Additional authors: Chakravartula, Ayyana M. Published by : Cambridge University P., (Cambridge :) Physical details: xvi, 681 p. : ill. ISBN: 9780521762212 . Subject(s): Biomedical materials. | Prosthesis -- Design and construction. Year: 2011
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Item type Location Call number Status Notes Date due
3 Weeks Loan 3 Weeks Loan
Turkeyen Campus
Science & Technology
R857.M3 P78 (Browse shelf) Available Please ask at the Science & Technology information desk
3 Weeks Loan 3 Weeks Loan
Turkeyen Campus
Science & Technology
R857.M3 P78 (Browse shelf) Available Please ask at the Science & Technology information desk
Browsing Turkeyen Campus Shelves , Shelving location: Science & Technology Close shelf browser
R857.B54 K35 Biomedical signals and sensors II : R857 .M3 B56 2004 Biomaterials science : R857.M3 P78 Mechanics of biomaterials : R857.M3 P78 Mechanics of biomaterials : R 857 O6 A75 1989 Diagnostic imaging/ R857.P52 P33 2006 PACS :

Includes bibliographical references.

Machine generated contents note: Part I. Materials: 1. Biocompatibility, sterilization and materials selection for implant design; 2. Metals for medical implants; 3. Ceramics; 4. Polymers; 5. Mechanical behavior of structural tissues; Part II. Mechanics: 6. Elasticity; 7. Viscoelasticity; 8. Failure theories; 9. Fracture mechanics; 10. Fatigue; 11. Friction, lubrication and wear; Part III. Case Studies: 12. Regulatory affairs and testing; 13. Orthopedics; 14. Cardiovascular devices; 15. Oral and maxillofacial devices; 16. Soft tissue replacements; Appendix A. Selected topics from mechanics of materials; Appendix B. Table of material properties of engineering biomaterials and tissues; Appendix C. Teaching methodologies in biomaterials; Glossary; List of symbols.

"Teaching mechanical and structural biomaterials concepts for successful medical implant design, this self-contained text provides a complete grounding for students and newcomers to the field. Split into three sections: Materials, Mechanics and Case Studies, it begins with a review of sterilization, biocompatibility and foreign body response before presenting the fundamental structures of synthetic biomaterials and natural tissues. Mechanical behavior of materials is then discussed in depth, covering elastic deformation, viscoelasticity and time-dependent behavior, multiaxial loading and complex stress states, yielding and failure theories, and fracture mechanics. The final section on clinical aspects of medical devices provides crucial information on FDA regulatory issues and presents case studies in four key clinical areas: orthopedics, cardiovascular devices, dentistry and soft tissue implants. Each chapter ends with a list of topical questions, making this an ideal course textbook for senior undergraduate and graduate students, and also a self-study tool for engineers, scientists and clinicians"--

Purchase Purchase July 27, 2018. 292388 $20, 285 YBYW

Purchase Purchase July 27, 2018. 292387 $20, 285 YBYW

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