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Titlebook: Degradation Phenomena on Polymeric Biomaterials; Heinrich Planck,Martin Dauner,Monika Renardy Conference proceedings 1992 Springer-Verlag

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書目名稱Degradation Phenomena on Polymeric Biomaterials
編輯Heinrich Planck,Martin Dauner,Monika Renardy
視頻videohttp://file.papertrans.cn/265/264877/264877.mp4
圖書封面Titlebook: Degradation Phenomena on Polymeric Biomaterials;  Heinrich Planck,Martin Dauner,Monika Renardy Conference proceedings 1992 Springer-Verlag
描述Tradi tionally, the International lTV - Conferences on Biomate- rials are focussing on problems in Biomedical Engineering, problems, which are still unsolved, of main interest, and which are of interdisciplinary character. In 1983, the Division of Biomedical Engineering of the Institute of Textile Technology and Chemical Engineering, Denkendorf, started wi th a conference about the use of polyurethanes in biomedicine. Three years later,. in 1986, progress in development and use of polyurethanes was selected as conference topic. It had to be realized that degradation problems were still dominating the discussions. The main discussion topics were: What are the causes for the degradation? How can one prevent them? What are the degradation products, and do they affect the human body? How can one simu- late the degradation? How can one accelerate the in vitro tests and how can the results predict the in vivo behaviour of the material? How do in vitro tests correlate with animal tests and the behaviour in the human body? At the third conference in 1989, the speakers focused on the use of textiles in medicine. Again the problem of degradation was discussed intensively and demonstrated by
出版日期Conference proceedings 1992
關(guān)鍵詞Abbau; Biomaterial; Biomedical Engineering; Biomedizinische Technik; Biopolymer; Degradation; Implant; Impl
版次1
doihttps://doi.org/10.1007/978-3-642-77563-5
isbn_softcover978-3-642-77565-9
isbn_ebook978-3-642-77563-5
copyrightSpringer-Verlag Berlin Heidelberg 1992
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Palais des Preussischen K?nigs-Hauseslse generators from migrating. Each of these (and many other) materials has been tested on the bench and has been proven to be stable, resistant to oxidation and other degradation mechanisms. The materials have been implanted in animals for long periods of time and have been proven to be “nondegrada
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Die Bearbeitung von Maschinenteilenmaterial has disappeared completely and no secondary surgery is needed. Besides the costs, time of treatment and uncomfort of the patient descends. Polymer materials which are hopeful for this indication are Polyglycolide, Polylactide, Polydioxanone and Polyhydroxy- butyrate. The physical data are w
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Conference proceedings 1992nsolved, of main interest, and which are of interdisciplinary character. In 1983, the Division of Biomedical Engineering of the Institute of Textile Technology and Chemical Engineering, Denkendorf, started wi th a conference about the use of polyurethanes in biomedicine. Three years later,. in 1986,
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https://doi.org/10.1007/978-3-642-94278-5ble to discriminate between materials of differing biostability. Three of the novel materials studied were more biostable than the commercial materials. The accelerated . model provides a technique to identify materials which are more biostable than existing commercial polyurethanes.
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