Biomaterials: A Systems Approach to Engineering Concepts provides readers with a systems approach to biomaterials and materials engineering. By focusing on the mechanical needs of implants, disease states, and current clinical needs, readers are encouraged to design materials and systems targeted at specific conditions, and to identify the impact of their proposed solutions. This inventive text is a useful resource for researchers, students, and course providers of biomaterials and biomedical engineering.
Biomaterials: A Systems Approach to Engineering Concepts provides readers with a systems approach to biomaterials and materials engineering. By focusing on the mechanical needs of implants, disease states, and current clinical needs, readers are encouraged to design materials and systems targeted at specific conditions, and to identify the impact of their proposed solutions.
This inventive text is a useful resource for researchers, students, and course providers of biomaterials and biomedical engineering.
Professor of Materials Science and Engineering, Biomedical Engineering and Dental and Biologic Materials at the University of Michigan, USA, where he heads a research group which is currently working on Biomaterials and Molecular and Cellular Biomechanics. Dr. Love has held appointments at Virginia Tech, Wake Forest School for Biomedical Engineering, Georgetown School of Medicine and GIT, as well as working as an engineer for Texas Instruments. He is on the editorial board of two international journals and was on the Dean's list for Teaching Excellence (based on Student perceptions at Virginia Tech): 2004, 2002, 1998, 1994. In addition, Dr. Love was nominated for the WL Wine Award for Teaching Excellence in 2007.
Inhaltsangabe
1. Cell Biology Principles2. Cell Expression: Proteins and their characterization3. Bones and Mineralized Tissues4. Connective and Soft Tissues5. Property Assessments ot Tissues6. Environmental and Aging Effects on Tissues7. Metallic Biomaterials8. Ceramic Biomaterials9. Polymeric Biomaterials10. Nanomaterials and Phase Contrast Imaging Agents11. Orthopaedic Biomaterials and Strategies12. Neural Engineered Biomaterials and Strategies13. Cardiovascular Engineered Biomaterials and Strategies14. Artificial Organs: Engineering and Strategies15. Special topics: Assays applied to both health and sports
1. Cell Biology Principles2. Cell Expression: Proteins and their characterization3. Bones and Mineralized Tissues4. Connective and Soft Tissues5. Property Assessments ot Tissues6. Environmental and Aging Effects on Tissues7. Metallic Biomaterials8. Ceramic Biomaterials9. Polymeric Biomaterials10. Nanomaterials and Phase Contrast Imaging Agents11. Orthopaedic Biomaterials and Strategies12. Neural Engineered Biomaterials and Strategies13. Cardiovascular Engineered Biomaterials and Strategies14. Artificial Organs: Engineering and Strategies15. Special topics: Assays applied to both health and sports
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