Characterization of Polymeric Biomaterials

Characterization of Polymeric Biomaterials
Author: Maria Cristina Tanzi,Silvia Farè
Publsiher: Woodhead Publishing
Total Pages: 503
Release: 2017-06-20
Genre: Technology & Engineering
ISBN: 9780081007433

Download Characterization of Polymeric Biomaterials Book in PDF, Epub and Kindle

Characterization of Polymeric Biomaterials presents a comprehensive introduction on the topic before discussing the morphology and surface characterization of biomedical polymers. The structural, mechanical, and biological characterization is described in detail, followed by invaluable case studies of polymer biomaterial implants. With comprehensive coverage of both theoretical and experimental information, this title will provide scientists with an essential guide on the topic of these materials which are regularly used for clinical applications, such as implants and drug delivery devices. However, a range of novel polymers and the development and modification of existing medical polymers means that there is an ongoing need to satisfy particular design requirements. This book explains the critical and fundamentals methods to characterize polymer materials for biomedical applications. Presents a self-contained reference on the characterization of polymeric biomaterials Provides comprehensive information on how to characterize biomedical polymers in order to improve design and synthesis Includes useful case studies that demonstrate the characterization of biomaterial implants

Polymeric Gels

Polymeric Gels
Author: Kunal Pal,Indranil Banerjee
Publsiher: Woodhead Publishing
Total Pages: 568
Release: 2018-06-15
Genre: Technology & Engineering
ISBN: 9780081021804

Download Polymeric Gels Book in PDF, Epub and Kindle

Polymeric Gels: Characterization, Properties and Biomedical Applications covers the fundamentals and applications of polymeric gels. Particular emphasis is given to their synthesis, properties and characteristics, with topics such as natural, synthetic, and smart polymeric gels, medical applications, and advancements in conductive and magnetic gels presented. The book covers the basics and applications of hydrogels, providing readers with a comprehensive guide on the types of polymeric gels used in the field of biomedical engineering. Provides guidance for decisions on the suitability and appropriateness of a synthetic route and characterization technique for particular polymeric networks Analyzes and compares experimental data Presents in-depth information on the physical properties of polymeric gels using mathematical models Uses an interdisciplinary approach to discuss potential new applications for both established polymeric gels and recent advances

Polymeric Biomaterials Structure and function

Polymeric Biomaterials  Structure and function
Author: Severian Dumitriu,Valentin I. Popa
Publsiher: CRC Press
Total Pages: 922
Release: 2013
Genre: Biomedical materials
ISBN: 9781420094701

Download Polymeric Biomaterials Structure and function Book in PDF, Epub and Kindle

The third edition of a bestseller, this comprehensive reference presents the latest polymer developments and most up-to-date applications of polymeric biomaterials in medicine. Expanded into two volumes, the first volume covers the structure and properties of synthetic and natural polymers as well as bioresorbable hybrid membranes, drug delivery systems, cell bioassay systems, and electrospinning for regenerative medicine. This substantially larger resource includes state-of-the-art research and successful breakthroughs in applications that have occurred in the last ten years.

Natural and Synthetic Biomedical Polymers

Natural and Synthetic Biomedical Polymers
Author: Sangamesh Kumbar,Cato Laurencin,Meng Deng
Publsiher: Newnes
Total Pages: 420
Release: 2014-01-21
Genre: Technology & Engineering
ISBN: 9780123972903

Download Natural and Synthetic Biomedical Polymers Book in PDF, Epub and Kindle

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

Intrinsically Biocompatible Polymer Systems

Intrinsically Biocompatible Polymer Systems
Author: Marek Kowalczuk
Publsiher: MDPI
Total Pages: 270
Release: 2020-03-25
Genre: Technology & Engineering
ISBN: 9783039284207

Download Intrinsically Biocompatible Polymer Systems Book in PDF, Epub and Kindle

Biocompatibility refers to the ability of a biomaterial to perform its desired function with respect to a medical therapy, without eliciting any undesirable local or systemic effects in the recipient or beneficiary of that therapy, but generating the most appropriate beneficial cellular or tissue response in that specific situation, and optimizing the clinically relevant performance of that therapy, which reflects current developments in the area of intrinsically biocompatible polymer systems. Polymeric biomaterials are presently used as, for example, long-term implantable medical devices, degradable implantable systems, transient invasive intravascular devices, and, recently, as tissue engineering scaffolds. This Special Issue welcomes full papers and short communications highlighting the aspects of the current trends in the area of intrinsically biocompatible polymer systems.

Surface Modification of Polymeric Biomaterials

Surface Modification of Polymeric Biomaterials
Author: Buddy D. Ratner,David G. Castner
Publsiher: Springer Science & Business Media
Total Pages: 200
Release: 2013-06-29
Genre: Science
ISBN: 9781489919533

Download Surface Modification of Polymeric Biomaterials Book in PDF, Epub and Kindle

Applications of synthetic materials in medicine date back over 4000 year2. The Egyptians used linen as sutures. In the Roman Empire, gold was used in dentistry. Perhaps even earlier, ivory and bone may have been used in the body by practitioners of the healing arts. The historical origins of modem biomaterials science are also hard to precisely trace, but many of the ideas that define biomaterials as we know them today evolved in the late 1950s and early 1960s. Surface modification technology has played a prominent role in biomaterials science, and has paralleled the evolution of the modem field. In a symposium organized by the Artifical Heart Program of the NIH National Heart Institute and the Artificial Kidney program of the NIH National Institute of Arthritis and Metabolic Diseases, held in Atlantic City, New Jersey, in 1968, there were already a number of presentations on surface modification. Surface characterization at that time included scanning electron microscopy, ellipsometry, contact angle methods, and infrared internal reflection methods.

Polymer Gels

Polymer Gels
Author: Vijay Kumar Thakur,Manju Kumari Thakur
Publsiher: Springer
Total Pages: 405
Release: 2018-08-07
Genre: Technology & Engineering
ISBN: 9789811060830

Download Polymer Gels Book in PDF, Epub and Kindle

This book addresses a range of synthesis and characterization techniques that are critical for tailoring and broadening the various aspects of polymer gels, as well as the numerous advantages that polymer gel-based materials offer. It presents a comprehensive collection of chapters on the recent advances and developments in the science and fundamentals of both synthetic and natural polymer-based gels. Topics covered include: synthesis and structure of physically/chemically cross-linked polymer-gels/polymeric nanogels; gel formation through non-covalent cross-linking; molecular design and characterization; polysaccharide-based polymer gels: synthesis, characterization, and properties; modified polysaccharide gels: silica-based polymeric gels as platforms for the delivery of pharmaceuticals; gel-based approaches in genomic and proteomic sciences; emulgels in drug delivery; and organogels. The book provides a cutting-edge resource for researchers and scientists working in various fields involving polymers, biomaterials, bio-nanotechnology and functional materials.

Characterization of Biomaterials

Characterization of Biomaterials
Author: Susmita Bose,Amit Bandyopadhyay
Publsiher: Elsevier Inc. Chapters
Total Pages: 450
Release: 2013-03-12
Genre: Science
ISBN: 9780128070956

Download Characterization of Biomaterials Book in PDF, Epub and Kindle

This brief introductory chapter provides a broad overview of materials, biomaterials and the need to understand different techniques to characterize biomaterials. From this chapter, the reader can gain a perspective on how the rest of the topics in different chapters are divided to fully comprehend this inherently multidisciplinary field. Application of appropriate characterization tools can not only save time to fully evaluate different biomaterials, it can also make commercial biomedical devices safer. In the long run, safer biomedical devices can only reduce the pain and suffering of mankind, a dream that resonates with every biomedical researcher.