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Titlebook: Handbook of Biomaterial Properties; Jonathan Black (Professor Emeritus of Bioengineeri Book 1998 Springer Science+Business Media Dordrecht

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書目名稱Handbook of Biomaterial Properties
編輯Jonathan Black (Professor Emeritus of Bioengineeri
視頻videohttp://file.papertrans.cn/421/420902/420902.mp4
圖書封面Titlebook: Handbook of Biomaterial Properties;  Jonathan Black (Professor Emeritus of Bioengineeri Book 1998 Springer Science+Business Media Dordrecht
描述Progress in the development of surgical implant materials has been hindered by the lack of basic information on the nature of the tissues, organs and systems being repaired or replaced. Materials‘ properties of living systems, whose study has been conducted largely under the rubric of tissue mechanics, has tended to be more descriptive than quantitative. In the early days of the modern surgical implant era, this deficiency was not critical. However, as implants continue to improve and both longer service life and higher reliability are sought, the inability to predict the behavior of implanted manufactured materials has revealed the relative lack of knowledge of the materials properties of the supporting or host system, either in health or disease. Such a situation is unacceptable in more conventional engineering practice: the success of new designs for aeronautical and marine applications depends exquisitely upon a detailed, disciplined and quantitative knowledge of service environments, including the properties of materials which will be encountered and interacted with. Thus the knowledge of the myriad physical properties of ocean ice makes possible the design and development of
出版日期Book 1998
關鍵詞alloy; biomaterial; cartilage; ceramics; composite material; dentistry; glass; material; materials propertie
版次1
doihttps://doi.org/10.1007/978-1-4615-5801-9
isbn_softcover978-1-4613-7658-3
isbn_ebook978-1-4615-5801-9
copyrightSpringer Science+Business Media Dordrecht 1998
The information of publication is updating

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Anaplastic Carcinoma of the Thyroid,The viscoelastic or energy dissipation properties are a result of fluid flow within and through the structures and also of molecular relaxation effects from the motion of long chains of collagen and proteoglycans [3]. Anisotropy is a consequence of the orientation and concentration of collagen fiber
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Jonathan Black (Professor Emeritus of Bioengineeri
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Book 1998ns depends exquisitely upon a detailed, disciplined and quantitative knowledge of service environments, including the properties of materials which will be encountered and interacted with. Thus the knowledge of the myriad physical properties of ocean ice makes possible the design and development of
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applications depends exquisitely upon a detailed, disciplined and quantitative knowledge of service environments, including the properties of materials which will be encountered and interacted with. Thus the knowledge of the myriad physical properties of ocean ice makes possible the design and development of 978-1-4613-7658-3978-1-4615-5801-9
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Cartilagee remainder being proteoglycans and cellular material. In the fully hydrated state, water contributes 60% to 80% of the wet weight of the tissue. Mechanically, intact normal articular cartilage behaves as a linear viscoelastic solid. This behavior is the result of viscous drag of fluid through the t
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