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Titlebook: Biomaterials Engineering and Devices: Human Applications; Volume 1: Fundamenta Donald L. Wise,Joseph D. Gresser,Michael J. Yaszem Book 2000

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发表于 2025-3-21 17:52:46 | 显示全部楼层 |阅读模式
期刊全称Biomaterials Engineering and Devices: Human Applications
期刊简称Volume 1: Fundamenta
影响因子2023Donald L. Wise,Joseph D. Gresser,Michael J. Yaszem
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发行地址Includes supplementary material:
图书封面Titlebook: Biomaterials Engineering and Devices: Human Applications; Volume 1: Fundamenta Donald L. Wise,Joseph D. Gresser,Michael J. Yaszem Book 2000
影响因子The medical device industry faces critical ongoing challenges in the search for new and better materials for advanced medical applications and to replace old materials that no longer stand the test of time. In Biomaterials Engineering and Devices: Human Applications, Volume 1: Fundamentals and Vascular and Carrier Applications, authoritative international experts comprehensively review many current state-of-the-art uses of polymers, metals, and ceramics in the human body. A.veritable encyclopedia of valuable data and experience, this volume not only fully addresses the major issues of compatibility and functionality, but also provides a technical treatise on the design and evaluation of biomaterials for vascular applications and on biomaterials as carriers for bioactive agents. The discussion includes treatment of emerging materials and of the regulatory and technical forces that shape their development. A second volume, Biomaterials Engineering and Devices: Human Applications, Volume 2 is devoted to biomaterials for dental applications, bony biomaterials for grafting applications, and orthopedic fixtures and cements..Extensively illustrated and referenced, Biomaterials Engineering
Pindex Book 2000
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New Synthetic Degradable Polymers as Carrier Materials for BMPis then resorbed and replaced by new bone mass, through a process of endochondral bone formation. Thus, the fracture site becomes encased in newly formed fusiform bone mass (repairing phase), which is subsequently remodeled to restore the original osseous anatomy and function (remodeling phase). Thi
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voted to biomaterials for dental applications, bony biomaterials for grafting applications, and orthopedic fixtures and cements..Extensively illustrated and referenced, Biomaterials Engineering978-1-61737-226-1978-1-59259-196-1
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https://doi.org/10.1007/978-3-8350-9281-5is then resorbed and replaced by new bone mass, through a process of endochondral bone formation. Thus, the fracture site becomes encased in newly formed fusiform bone mass (repairing phase), which is subsequently remodeled to restore the original osseous anatomy and function (remodeling phase). Thi
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Biomaterials Engineering and Devices: Human Applications978-1-59259-196-1
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Allgemeine Aspekte zur Kontrazeption,plantation. These adherent phagocytes are actively involved in the pathogenesis of a variety of biomaterial-associated adverse reactions, including inflammation surrounding many types of implants .; implant degradation and stress cracking .; tissue fibrosis surrounding mammary prostheses, joint impl
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https://doi.org/10.1007/978-3-322-85216-8he determination of biocompatibility has been dominated historically by the characterization of candidate materials, based on the observation of adverse host responses. However, some adverse responses are subtler in clinical settings, and continue to foster debate and investigation. One of these res
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