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Titlebook: Interface Oral Health Science 2014; Innovative Research Keiichi Sasaki,Osamu Suzuki,Nobuhiro Takahashi Conference proceedings‘‘‘‘‘‘‘‘ 2015

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书目名称Interface Oral Health Science 2014
副标题Innovative Research
编辑Keiichi Sasaki,Osamu Suzuki,Nobuhiro Takahashi
视频video
概述Broadens readers’ understanding of the concept of biosis-abiosis intelligent interface.Offers opportunities to promote significant research in dentistry and its related area for the next generation.Su
图书封面Titlebook: Interface Oral Health Science 2014; Innovative Research  Keiichi Sasaki,Osamu Suzuki,Nobuhiro Takahashi Conference proceedings‘‘‘‘‘‘‘‘ 2015
描述The Tohoku University Graduate School of Dentistry first introduced the concept of “Interface Oral Health Science”, designed to establish and maintain healthy oral cavities, which are home to a number of mixed systems. Included in those systems are: (1) host tissues such as teeth, mucosa, muscle and bone, (2) parasites and microorganisms cohabiting the surfaces of the oral cavity and (3) biomaterials that are used for the rehabilitation of oral functions. In addition, (4) these systems are subject to severe and complex mechanical forces. Therefore, it is critical to promote dental studies that integrate a wide range of interdisciplinary research as medicine, agriculture, material science, engineering, and pharmacology. With this incentive, international symposiums for interface oral health science have been held several times in the past. The concept has since refined and expanded, the result being the “Biosis-Abiosis Intelligent Interface,” and projects aiming at the creation of highly functional and autonomic intelligent interfaces are ongoing. This book brings together a number of studies on incentives and projects by leading authors. Topics include biosis-abiosis interface of d
出版日期Conference proceedings‘‘‘‘‘‘‘‘ 2015
关键词Biomaterials; Biomedical engineering; Biosis-abiosis; Dentistry; Intelligent interface science
版次1
doihttps://doi.org/10.1007/978-4-431-55192-8
isbn_softcover978-4-431-56234-4
isbn_ebook978-4-431-55192-8
copyrightThe Editor(s) (if applicable) and the Author(s) 2015
The information of publication is updating

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Surface Improvement for Biocompatibility of Ti-6Al-4V by Dealloying in Metallic Meltility. The toxic ion release from the overall sample did not effectively decrease because of the substantial surface area that developed using the dealloying method. By optimizing the dealloying conditions to suppress surface area development, drastic improvement in the biocompatibility of this Ti alloy is expected.
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