metallic foam bone

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Metallic Foam Bone
Author :
Publisher : Woodhead Publishing
Release Date :
ISBN 10 : 008101290X
Pages : 260 pages
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Metallic Foam Bone: Processing, Modification and Characterization and Properties examines the use of porous metals as novel bone replacement materials. With a strong focus on materials science and clinical applications, the book also examines the modification of metals to ensure their biocompatibility and efficacy in vivo. Initial chapters discuss processing and production methods of metals for tissue engineering and biomedical applications that are followed by topics on practical applications in orthopedics and dentistry. Finally, the book addresses the surface science of metallic foam and how it can be tailored for medical applications. This book is a valuable resource for materials scientists, biomedical engineers, and clinicians with an interest in innovative biomaterials for orthopedic and bone restoration. Introduces biomaterials researchers to a promising, rapidly developing technology for replacing hard tissue Increases familiarity with a range of technologies, enabling materials scientists and engineers to improve the material properties of porous metals Explores the clinical applications of metal foams in orthopedics and dentistry

Metallic Foam Bone

Metallic Foam Bone: Processing, Modification and Characterization and Properties examines the use of porous metals as novel bone replacement materials. With a strong focus on materials science and clinical applications, the book also examines the modification of metals to ensure their biocompatibility and efficacy in vivo. Initial chapters discuss processing

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Metal Foams

•Covers all phases of metal foam theory and technology •Techniques linking pore structure to custom properties •New applications in transportation, energy absorption, and orthopedic implants •Foams from a variety of metals as well as special shapes and lotus-type

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Biomaterials

Biomaterials: From Molecules to Engineered Tissue gives examples of the application areas of biomaterials involving molecules at one end of the spectrum and finished devices in the other. It covers molecular approaches as well as molecules functional in preparing and modifying biomaterials, medical devices and systems, tissue engineering and artificial

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MetFoam 2007

Explains ways to design and process metallic foams, including many non-aluminum foams. This book illustrates the numerous industry applications where metallic foams and porous metals are being implemented.

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Porosity

This book discusses multiways in the porous materials. It involves materials with a large number of holes, and it highlights the synthesis, structure, and surface properties of porous materials closely related to more applications, such as support, catalyst, energy storage, chemical reactions, and optical applications. It studies the effect of

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Porous Metals and Metallic Foams

10th International Conference on Porous Metals and Metallic Foams (MetFoam 2017) Selected, peer reviewed papers from the 10th International Conference on Porous Metals and Metallic Foams (MetFoam 2017), September 14-17, 2017, Nanjing, China

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Metallic Biomaterials Processing and Medical Device Manufacturing

Metallic Biomaterials Processing and Medical Device Manufacturing details the principles and practices of the technologies used in biomaterials processing and medical device manufacturing. The book reviews the main categories of metallic biomaterials and the essential considerations in design and manufacturing of medical devices. It bridges the gap between the designing

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Bone Implant Interface in Orthopedic Surgery

Total joint arthroplasty is an effective surgical procedure for end-stage osteoarthritis of major joints with satisfactory long term clinical outcome. A large and growing number of arthroplasties are performed annually worldwide and a great number of orthopaedic surgeons are practicing arthroplasty surgery as their main surgical activity. The biological behavior

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An Insight Into Metal Based Foams

Download or read online An Insight Into Metal Based Foams written by Dipen Kumar Rajak, published by Springer Nature which was released on 2021-09-27. Get An Insight Into Metal Based Foams Books now! Available in PDF, ePub and Kindle.

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The Biomedical Engineering Handbook 1

Download or read online The Biomedical Engineering Handbook 1 written by Joseph D. Bronzino, published by Springer Science & Business Media which was released on 2000-02-15. Get The Biomedical Engineering Handbook 1 Books now! Available in PDF, ePub and Kindle.

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Medical Device Materials

Download or read online Medical Device Materials written by Sanjay Shrivastava, published by ASM International which was released on 2004-01-01. Get Medical Device Materials Books now! Available in PDF, ePub and Kindle.

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Basic Orthopaedic Sciences

Following on from the highly successful first edition, published in 2006, the second edition of Basic Orthopaedic Sciences has been fully updated and revised, with every chapter rewritten to reflect the latest research and practice. The book encompasses all aspects of musculoskeletal basic sciences that are relevant to the practice of

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Polymeric Foams Structure Property Performance

Polymeric Foams Structure–Property–Performance: A Design Guide is a response to the design challenges faced by engineers in a growing market with evolving standards, new regulations, and an ever-increasing variety of application types for polymeric foam. Bernard Obi, an author with wide experience in testing, characterizing, and applying polymer

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Bone Tissue Engineering

Focusing on bone biology, Bone Tissue Engineering integrates basic sciences with tissue engineering. It includes contributions from world-renowned researchers and clinicians who discuss key topics such as different models and approaches to bone tissue engineering, as well as exciting clinical applications for patients. Divided into four sections, t

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Magnesium Materials

The book provides an introduction to the topic of magnesium materials for biomedical applications. Additional to the background on magnesium’s physical, chemical and mechanical properties, areas of use, related diseases and pathways for biodegradation will be discussed. Also, an outlook of the future of magnesium material applications will be

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