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Biocompatibility --- Biomedical materials --- Polymers --- Biocompatibility. --- Biomedical materials.
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Biomedical materials --- Biocompatibility --- Biocompatible Materials --- Prostheses and Implants
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Shape memory alloys are suitable for a wide range of biomedical applications, such as dentistry, bone repair and cardiovascular stents. Shape memory alloys for biomedical applications provides a comprehensive review of the use of shape memory alloys in these and other areas of medicine.Part one discusses fundamental issues with chapters on such topics as mechanical properties, fabrication of materials, the shape memory effect, superelasticity, surface modification and biocompatibility. Part two covers applications of shape memory alloys in areas such as stents and orthodontic devices a
62-039.1 --- Biomaterials --- Biomedical materials. --- Bioartificial materials --- Biocompatible materials --- Biomaterials (Biomedical materials) --- Hemocompatible materials --- Medical materials --- Medicine --- Biomedical engineering --- Materials --- Biocompatibility --- Prosthesis
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This book presents our current level of understanding on the nature of a biomaterial surface, the adaptive response of the biomatrix to that surface, techniques used to modify biocompatibility, and state-of-the-art characterisation techniques to follow the interfacial events at that surface.
Biomedical materials --- Surfaces --- Biocompatibility. --- Biomedical materials. --- Biocompatible materials --- Biomaterials --- Medical materials --- Medicine --- Biomedical engineering --- Materials --- Biocompatibility --- Prosthesis --- Biological compatibility --- Biological tolerance --- Biomedical compatibility --- Biomedical tolerance --- Biotolerance --- Compatibility, Biological --- Compatibility, Biomedical --- Tolerance, Biological --- Tolerance, Biomedical --- Bioartificial materials --- Hemocompatible materials --- Biomaterials (Biomedical materials) --- Biomedical materials - Surfaces
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The second edition of this bestselling title provides the most up-to-date comprehensive review of all aspects of biomaterials science by providing a balanced, insightful approach to learning biomaterials. This reference integrates a historical perspective of materials engineering principles with biological interactions of biomaterials. Also provided within are regulatory and ethical issues in addition to future directions of the field, and a state-of-the-art update of medical and biotechnological applications. All aspects of biomaterials science are thoroughly addressed, from tissue en
Biomedical engineering. --- Biomedical materials. --- Biocompatible materials --- Biomaterials --- Medical materials --- Medicine --- Biomedical engineering --- Materials --- Biocompatibility --- Prosthesis --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Bioartificial materials --- Hemocompatible materials --- Biomaterials (Biomedical materials) --- Biomedical materials --- 62-039.1 --- Biomaterialen
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The biomaterials sector is rapidly expanding and significant advances have been made in the technology of biomedical coatings and materials, which provide a means to improve the wear of joints, change the biological interaction between implant and host and combine the properties of various materials to improve device performance. Coatings for biomedical applications provides an extensive review of coating types and surface modifications for biomedical applications.The first part of the book explores a range of coating types and their biomedical applications. Chapters look at hydrophili
Biological techniques --- General biophysics --- Human biochemistry --- Human medicine --- Biomedical materials. --- Protective coatings. --- Coating compositions --- Coatings --- Corrosion and anti-corrosives --- Bioartificial materials --- Biocompatible materials --- Biomaterials (Biomedical materials) --- Hemocompatible materials --- Medical materials --- Medicine --- Biomedical engineering --- Materials --- Biocompatibility --- Prosthesis --- Biomedical materials
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Biomedical materials --- Terminology --- Congresses --- -#TWER:BIOM --- Biocompatible materials --- Biomaterials --- Medical materials --- Medicine --- Biomedical engineering --- Materials --- Biocompatibility --- Prosthesis --- -Congresses --- #TWER:BIOM --- Terminology&delete& --- Matériaux biomédicaux. Terminologie anglaise. (Congrès) --- Biomedische materialen. Termen (Engelse). (Congres) --- Bioartificial materials --- Hemocompatible materials --- Biomaterials (Biomedical materials) --- Biomedical materials - Terminology - Congresses
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Blood --- Biomedical materials --- Congresses --- 612.115 --- 541.183 --- -Blood --- -Body fluids --- Fear of blood --- Biocompatible materials --- Biomaterials --- Medical materials --- Medicine --- Biomedical engineering --- Materials --- Biocompatibility --- Prosthesis --- Blood coagulation, clotting --- Contact systems. Adsorption. Surface chemistry --- -Blood coagulation, clotting --- 541.183 Contact systems. Adsorption. Surface chemistry --- 612.115 Blood coagulation, clotting --- -541.183 Contact systems. Adsorption. Surface chemistry --- Body fluids --- Blood - Congresses --- Biomedical materials - Congresses
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This book covers the latest advances in processing techniques for producing metallic biomaterial implants. It also discusses recent developments in surface modifications using bioactive ceramics and blood-compatible polymers, as well as the adhesive strength of bioactive surface layers, before introducing the practical applications of metallic biomaterials in the fields of surgery and dentistry. As such, the book provides an essential reference guide for researchers, graduate students and clinicians working in the fields of materials, surgery, dentistry, and mechanics. Mitsuo Niinomi, PhD, D.D.Sc., is a Professor at the Institute for Materials Research, Tohoku University, Japan Takayuki Narushima, PhD, is a Professor at the Department of Materials Processing, Tohoku University, Japan Masaaki Nakai, PhD, is an Associate Professor at the Institute for Materials Research, Tohoku University, Japan.
Materials Science. --- Biomaterials. --- Biomedical Engineering. --- Metallic Materials. --- Orthopedics. --- Biomedical engineering. --- Materials. --- Orthopédie --- Génie biomédical --- Matériaux --- Health & Biological Sciences --- Biomedical Engineering --- Metals in medicine. --- Biomedical materials. --- Biocompatible materials --- Biomaterials --- Medical materials --- Medicine --- Materials --- Materials science. --- Metals. --- Biomedical engineering --- Biocompatibility --- Prosthesis --- Biomedical materials --- Medical instruments and apparatus --- Biomedical Engineering and Bioengineering. --- Orthopaedics --- Orthopedia --- Surgery --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Metallic elements --- Chemical elements --- Ores --- Metallurgy --- Bioartificial materials --- Hemocompatible materials --- Biomaterials (Biomedical materials)
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Biomedical engineering --- Biophysics --- Medical physics --- Biomedical materials --- Biophysique --- Physique médicale --- Biomatériaux --- 57.089.6 --- Health physics --- Health radiation physics --- Medical radiation physics --- Radiotherapy physics --- Radiation therapy physics --- Physics --- Biological physics --- Biology --- Medical sciences --- Biocompatible materials --- Biomaterials --- Medical materials --- Medicine --- Materials --- Biocompatibility --- Prosthesis --- Experimental surgical techniques --- 57.089.6 Experimental surgical techniques --- Physique médicale --- Biomatériaux --- Biomedical Engineering. --- Biophysics. --- Bioartificial materials --- Hemocompatible materials --- Biomaterials (Biomedical materials)
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