April 12, 2021

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Biomedical Polymers

Biomedical Polymers
Author : Mike Jenkins
Publisher : Elsevier
Release Date : 2007-08-06
Category : Technology & Engineering
Total pages :236
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Given the rapid development and use of biomaterials, it is becoming increasingly important to understand the structure, processing and properties of biomedical polymers and their medical applications. With its distinguished editor and team of international contributors, Biomedical Polymers reviews the latest research on this important group of biomaterials. The book discusses natural, synthetic, biodegradable and non bio-degradable polymers and their applications. Chapters review polymeric scaffolds for tissue engineering and drug delivery systems, the use of polymers in cell encapsulation, their role as replacement materials for heart valves and arteries, and their applications in joint replacement. The book also discusses the use of polymers in biosensor applications. Biomedical polymers is an essential reference for scientists and all those concerned with the development and use of this important group of biomaterials Reviews the latest research in this important group of biomaterials Discusses natural, synthetic, biodegradable and non-biodegradable polymers and their applications Examines the use of biomedical polymers in such areas as drug delivery systems and cell encapsulation

Natural and Synthetic Biomedical Polymers

Natural and Synthetic Biomedical Polymers
Author : Sangamesh Kumbar,Cato Laurencin,Meng Deng
Publisher : Newnes
Release Date : 2014-01-21
Category : Technology & Engineering
Total pages :420
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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

Biomedical Polymers

Biomedical Polymers
Author : Vinod B. Damodaran,Divya Bhatnagar,N. Sanjeeva Murthy
Publisher : Springer
Release Date : 2016-05-24
Category : Technology & Engineering
Total pages :71
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This book presents a comprehensive review on the various processing and post-processing methodologies for biodegradable polymers. Written by professionals with hands-on experience on polymer processing, this book provides first-hand knowledge of all contemporary processing techniques. The current status and future challenges in the field are described, as well as a framework for designing novel devices for desired applications.

Biomedical Polymers

Biomedical Polymers
Author : Alan Rembaum,Mitchel C. Shen
Publisher : Marcel Dekker
Release Date : 1971
Category : Polymers in Medicine
Total pages :292
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Natural-Based Polymers for Biomedical Applications

Natural-Based Polymers for Biomedical Applications
Author : Tatiana G. Volova,Yuri S. Vinnik,Ekaterina I. Shishatskaya,Nadejda M. Markelova,Gennady E. Zaikov
Publisher : CRC Press
Release Date : 2017-04-21
Category : Medical
Total pages :440
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This new book presents the authors’ biomedical studies of natural degradable biopolymers (polyhydroxyalkanoates [PHAs]) and discusses the demand for medical-grade materials and modern trends, focusing on the present status and future potential of PHAs. The authors present and summarize their most important results and findings obtained during the last few years in experimental studies and clinical trials of PHAs at the Institute of Biophysics Siberian Branch of Russian Academy of Science.

Surface and Interfacial Aspects of Biomedical Polymers:Vol. 2:Protein Adsorption

Surface and Interfacial Aspects of Biomedical Polymers:Vol. 2:Protein Adsorption
Author : Joseph Andrade
Publisher : Springer
Release Date : 1985
Category : Science
Total pages :347
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Encyclopedia of Biomedical Polymers and Polymeric Biomaterials

Encyclopedia of Biomedical Polymers and Polymeric Biomaterials
Author : Munmaya Mishra
Publisher : Unknown
Release Date : 2015
Category :
Total pages :129
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Natural-Based Polymers for Biomedical Applications

Natural-Based Polymers for Biomedical Applications
Author : Rui L. Reis,Nuno M. Neves,Joao F. Mano,Manuela E. Gomes,Alexandra P. Marques,Helena S. Azevedo
Publisher : Elsevier
Release Date : 2008-08-15
Category : Technology & Engineering
Total pages :832
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Polymers from natural sources are particularly useful as biomaterials and in regenerative medicine, given their similarity to the extracellular matrix and other polymers in the human body. This important book reviews the wealth of research on both tried and promising new natural-based biomedical polymers, together with their applications as implantable biomaterials, controlled-release carriers or scaffolds for tissue engineering. The first part of the book reviews the sources, processing and properties of natural-based polymers for biomedical applications. Part two describes how the surfaces of polymer-based biomaterials can be modified to improve their functionality. The third part of the book discusses the use of natural-based polymers for biodegradable scaffolds and hydrogels in tissue engineering. Building on this foundation, Part four looks at the particular use of natural-gelling polymers for encapsulation, tissue engineering and regenerative medicine. The penultimate group of chapters reviews the use of natural-based polymers as delivery systems for drugs, hormones, enzymes and growth factors. The final part of the book summarises research on the key issue of biocompatibility. Natural-based polymers for biomedical applications is a standard reference for biomedical engineers, those studying and researching in this important area, and the medical community. Examines the sources, processing and properties of natural based polymers for biomedical applications Explains how the surfaces of polymer based biomaterials can be modified to improve their functionality Discusses the use of natural based polymers for hydrogels in tissue engineering, and in particular natural gelling polymers for encapsulation and regenerative medicine

Biomedical Polymers and Polymer Therapeutics

Biomedical Polymers and Polymer Therapeutics
Author : Emo Chiellini,Junzo Sunamoto,Claudio Migliaresi,Raphael M. Ottenbrite,Daniel Cohn
Publisher : Springer Science & Business Media
Release Date : 2007-05-08
Category : Medical
Total pages :452
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Proceedings of the Third International Symposium on Frontiers in Biomedical Polymers including Polymer Therapeutics: From Laboratory to Clinical Practice, held May 23-27, 1999, in Shiga, Japan. This book focuses on the progress and unique discoveries in the interdisciplinary scientific and technological area of biomedical application of polymers. The topics include polymeric materials for biomedical and pharmaceutical applications, as well as polymeric materials in therapeutics.

Shape Memory Polymers for Biomedical Applications

Shape Memory Polymers for Biomedical Applications
Author : L Yahia
Publisher : Elsevier
Release Date : 2015-03-19
Category : Technology & Engineering
Total pages :326
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Shape memory polymers (SMPs) are an emerging class of smart polymers which give scientists the ability to process the material into a permanent state and predefine a second temporary state which can be triggered by different stimuli. The changing chemistries of SMPs allows scientists to tailor important properties such as strength, stiffness, elasticity and expansion rate. Consequently SMPs are being increasingly used and developed for minimally invasive applications where the material can expand and develop post insertion. This book will provide readers with a comprehensive review of shape memory polymer technologies. Part 1 will discuss the fundamentals and mechanical aspects of SMPs. Chapters in part 2 will look at the range of technologies and materials available for scientific manipulation whilst the final set of chapters will review applications. Reviews the fundamentals of shape memory polymers with chapters focussing on the basic principles of the materials Comprehensive coverage of design and mechanical aspects of SMPs Expert analysis of the range of technologies and materials available for scientific manipulation

Advanced Functional Polymers for Biomedical Applications

Advanced Functional Polymers for Biomedical Applications
Author : Masoud Mozafari,Narendra Pal Singh Chauhan
Publisher : Elsevier
Release Date : 2019-06-14
Category : Technology & Engineering
Total pages :430
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Advanced Functional Polymers for Biomedical Applications presents novel techniques for the preparation and characterization of functionalized polymers, enabling researchers, scientists and engineers to understand and utilize their enhanced functionality in a range of cutting-edge biomedical applications. Provides systematic coverage of the major types of functional polymers, discussing their properties, preparation techniques and potential applications Presents new synthetic approaches alongside the very latest polymer processing and characterization methods Unlocks the potential of functional polymers to support ground-breaking techniques for drug and gene delivery, diagnostics, tissue engineering and regenerative medicine

Materials for Biomedical Engineering: Absorbable Polymers

Materials for Biomedical Engineering: Absorbable Polymers
Author : Alexandru Grumezescu,Valentina Grumezescu
Publisher : Elsevier
Release Date : 2019-06-28
Category : Medical
Total pages :462
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Materials for Biomedical Engineering: Absorbable Polymers provides a detailed and comprehensive review of recent progress in absorbable biopolymers and their impact on biomedical engineering. The book's main focus lies in their classification, processing, properties and performance, biocompatibility, and their applications in tissue engineering, drug delivery, bone repair and regenerative medicine. The most up-to-date methods used to obtain such polymers and how to improve their properties is discussed in detail. This book provides readers with a comprehensive and updated review of the latest research in the field of absorbable polymers for biomedical applications. Provides knowledge of the range of absorbable polymers currently available, enabling the reader to make optimal materials selection decisions Presents detailed information on current and proposed applications of the latest developments Includes a strong emphasis on chemistry and physico-chemical characterization of these materials and their application in biomedical engineering

Progress in Biomedical Polymers

Progress in Biomedical Polymers
Author : Charles G. Gebelein,Richard L. Dunn
Publisher : Springer Science & Business Media
Release Date : 1990-07
Category : Science
Total pages :406
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Proceedings from the September 1988 meeting. The major emphasis is on new polymeric materials, and papers are grouped into sections on various applications: opthalmic; surgical, dental, and diagnostic; and controlled release and bioactive polymer applications. Annotation copyright Book News, Inc. Portland, Or.

Alginates

Alginates
Author : Md Saquib Hasnain,Amit Kumar Nayak
Publisher : CRC Press
Release Date : 2019-04-01
Category : Medical
Total pages :626
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This new volume explores the latest research on the use of alginate as a biopolymer in various biomedical applications and therapeutics. The uses of alginates and modified alginates discussed in this book include tissue regeneration, encapsulation and delivery of drugs, nucleic acid materials, proteins and peptides, genes, herbal therapeutic agents, nutraceuticals, and more. This book also describes the synthesis and characterizations of various alginate and modified alginate systems, such as hydrogels, gels, composites, nanoparticles, scaffolds, etc., used for the biomedical applications and therapeutics. Alginate, a biopolymer of natural origin, is of immense interest for its variety of applications in pharmaceuticals (as medical diagnostic aids) and in materials science. It is the one of the most abundant natural biopolymers and is considered an excellent excipient because of its non-toxic, stable, and biodegradable properties. Several research innovations have been made on applications of alginate in drug delivery and biomedicines. There needs to be a thorough understanding of the synthesis, purification, and characterization of alginates and its derivatives for their utility in healthcare fields, and this volume offers an abundance of information toward that end.

Smart Biomaterial Devices

Smart Biomaterial Devices
Author : A.K. Bajpai,Jaya Bajpai,Rajesh Kumar Saini,Priyanka Agrawal,Atul Tiwari
Publisher : CRC Press
Release Date : 2016-12-19
Category : Medical
Total pages :228
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Polymers have emerged as one of the most innovative classes of materials in modern materials science, leading to new applications in medicine and pharmacy. This book offers a convincing and understandable approach to polymer biomaterial devices being used in various areas related to biomedical and pharmaceutical fields. The polymer materials finding application as biomaterials are discussed and described in detail pertaining to the areas of artificial implants, orthopedics, ocular devices, dental implants, drug delivery systems, burns and wounds.