Biomedical Textiles for Orthopaedic and Surgical Applications Books

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Biomedical Textiles for Orthopaedic and Surgical Applications


Biomedical Textiles for Orthopaedic and Surgical Applications
  • Author : Todd Blair
  • Publisher : Elsevier
  • Release : 2015-03-13
  • ISBN : 9781782420262
  • Language : En, Es, Fr & De
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Recent concerns over the possible effects of metal-on-metal orthopaedic implants and the evolution of more natural structures made from fibre have made medical device manufacturers consider the potential of fibre. Textiles offer the potential to replace traditional materials with novel fibres which are more suitable for many load bearing applications. Orthopaedics, in particular, is embracing textile technology for repairing, replacing, and regenerating integral pieces of the skeletal system and its associated components. This important new book will provide readers with a comprehensive overview of the role biomedical textiles can play in the orthopaedic field. Chapters in part one will discuss the fundamentals of textiles for orthopaedic applications. Part two will cover textiles for implantable orthopaedic applications whilst the final set of chapters will discuss the role of textiles in orthopaedic tissue engineering. Provides a comprehensive overview of the role biomedical textiles can play in the orthopaedic field

Hydroxyapatite HAp for Biomedical Applications


Hydroxyapatite  HAp  for Biomedical Applications
  • Author : Michael Mucalo
  • Publisher : Elsevier
  • Release : 2015-03-06
  • ISBN : 9781782420415
  • Language : En, Es, Fr & De
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Hydroxyapatite in the form of hydroxycarbonate apatite is the principal mineral component of bone tissue in mammals. In Bioceramics, it is classed as a bioactive material, which means bone tissue grows directly on it when placed in apposition without intervening fibrous tissue. Hydroxyapatite is hence commonly used as bone grafts, fillers and as coatings for metal implants. This important book provides an overview of the most recent research and developments involving hydroxyapatite as a key material in medicine and its application. Reviews the important properties of hydroxyapatite as a biomaterial Considers a range of specific forms of the material and their advantages Reviews a range of specific medical applications for this important material

The 1996 Clemson University Conference on Medical Textiles and Biomedical Polymers and Materials


The 1996 Clemson University Conference on Medical Textiles and Biomedical Polymers and Materials
  • Author :
  • Publisher :
  • Release : 1996
  • ISBN : PSU:000032952735
  • Language : En, Es, Fr & De
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Biomedical Engineering


Biomedical Engineering
  • Author :
  • Publisher :
  • Release : 1974
  • ISBN : CORNELL:31924065075677
  • Language : En, Es, Fr & De
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Natural and Synthetic Biomedical Polymers


Natural and Synthetic Biomedical Polymers
  • Author : Sangamesh Kumbar
  • Publisher : Newnes
  • Release : 2014-01-21
  • ISBN : 9780123972903
  • Language : En, Es, Fr & De
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Polymers are important and attractive biomaterials for researchers and clinical applications due to the ease of tailoring their chemical, physical and biological properties for target devices. Due to this versatility they are rapidly replacing other classes of biomaterials such as ceramics or metals. As a result, the demand for biomedical polymers has grown exponentially and supports a diverse and highly monetized research community. Currently worth $1.2bn in 2009 (up from $650m in 2000), biomedical polymers are expected to achieve a CAGR of 9.8% until 2015, supporting a current research community of approximately 28,000+. Summarizing the main advances in biopolymer development of the last decades, this work systematically covers both the physical science and biomedical engineering of the multidisciplinary field. Coverage extends across synthesis, characterization, design consideration and biomedical applications. The work supports scientists researching the formulation of novel polymers with desirable physical, chemical, biological, biomechanical and degradation properties for specific targeted biomedical applications. Combines chemistry, biology and engineering for expert and appropriate integration of design and engineering of polymeric biomaterials Physical, chemical, biological, biomechanical and degradation properties alongside currently deployed clinical applications of specific biomaterials aids use as single source reference on field. 15+ case studies provides in-depth analysis of currently used polymeric biomaterials, aiding design considerations for the future