An Overview Of Biomedical Implants


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An Overview of Biomedical Implants


An Overview of Biomedical Implants

Author: Tolou Shokuhfar

language: en

Publisher: John Wiley & Sons

Release Date: 2025-03-18


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Understand the core materials that create biomedical innovation Some of the greatest medical advances in recent decades have come in the form of biomedical implants. Whether in the form of traditional orthopedic implants, medical devices for the cardiovascular system, or polymer-based ocular implants, biomedical implants can be lifesaving or life-transforming interventions. The biomaterials which comprise these implants are a vital area of ongoing research, but no prior volume has ever taken comprehensive stock of this subject and its growing applications. An Overview of Biomedical Implants fills this gap with a thorough overview of all major biomaterials and their role in biomedical implants. Composed for an interdisciplinary audience, the book addresses all scales and areas of application. The result is an essential resource in this critical ongoing area of biomedical research. An Overview of Biomedical Implants readers will also find: Description of the relationship between every specific biomaterial and its role in each major implant category Detailed discussion of nanoscale to molecular-scale to industrial-scale biomaterials Concrete examples in every chapter, along with a list of pertinent references An Overview of Biomedical Implants is ideal for physicians, scientists, and engineers—those working in the area of biomaterials, medical, biological and chemical and applied physics, pharmaceutical science and as a reference for professors and students in these areas.

Biomedical Implants


Biomedical Implants

Author: Ravi K. Dwivedi

language: en

Publisher: CRC Press

Release Date: 2024-02-14


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This book provides a comprehensive overview of the development of implants, from the selection of materials to the outcome of the process. It covers various steps, including biocompatible material, synthesis, and characterization, compatibility and limitations of materials, specific implants, and finite element analysis of medical implants. It also presents a comparison between predictions and experimental results by studying real-world problems and addresses the issue of sustainability in implant manufacturing, process modeling, and optimization in additive manufacturing supported by case studies. Features: Covers the development of implants from the selection of material to the suitable process of manufacturing technologies Includes biocompatible material, synthesis, characterization, compatibility, and limitations of materials Reviews biofabrication in terms of artificial organs and soft tissues Discusses implant manufacturing, including additive and micro-manufacturing and failure analysis through case studies Addresses the issue of sustainability in implant manufacturing This book is intended for researchers and graduate students specializing in mechanical, biomedical, healthcare engineering, biomaterials, and additive manufacturing.

Polymeric Materials for Biomedical Implants


Polymeric Materials for Biomedical Implants

Author: Sabu Thomas

language: en

Publisher: Elsevier

Release Date: 2023-10-03


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Polymeric Materials for Biomedical Implants: Characterization, Properties, and Applications offers a comprehensive guide to the various polymers utilized in the development and application of biomedical implants. These materials possess unique properties which make them ideal for use in biomedical implants, including their high degree of flexibility, ease of fabrication, non-magnetic and radio transparent properties for medical imaging, and ease of engineering for biocompatibility. The book thoroughly reviews the properties, characterization and a broad range of applications of polymeric materials in biomedical implants, bringing all key information on this important topic together under a single reference. The book's chapters cover vital topics for the development of polymeric biomedical implants, including biomaterial-tissue interactions, mechanical and surface property requirements for different implants, as well as market and ethical issues. This will be a useful reference for academics and researchers working in materials science, biomedical engineering, regenerative medicine and pharmacology, as well as R&D groups developing biomedical implants. - Helps the reader make an informed choice when selecting polymeric materials for use in biomedical implants - Covers a broad range of applications of biomedical implants, including cancer therapy, orthopedics, cardiovascular, biosensing and wound healing - Emphasizes the importance of biocompatibility, with chapters covering toxicity and degradation aspects, as well as biomaterial-tissue interactions and the foreign body response