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Titlebook: Surface Engineered Surgical Tools and Medical Devices; Mark J. Jackson,Waqar Ahmed Book 20071st edition Springer-Verlag US 2007 Implantat.

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书目名称Surface Engineered Surgical Tools and Medical Devices
编辑Mark J. Jackson,Waqar Ahmed
视频video
概述Presents the latest developments in surface coatings technology such as chemical vapour deposition for use on complex cutting tools for biomedical applications.Presents a complete description of clini
图书封面Titlebook: Surface Engineered Surgical Tools and Medical Devices;  Mark J. Jackson,Waqar Ahmed Book 20071st edition Springer-Verlag US 2007 Implantat.
描述.Medical devices and surgical tools that contain micro and nanoscale features allow surgeons to perform clinical procedures with greater precision and safety while monitoring physiological and biomechanical parameters more accurately. While surgeons have started to master the use of nanostructured surgical tools in the operating room, this book addresses for the first time the impact and interaction of nanomaterials and nanostructured coatings in a comprehensive manner....Surface Engineered Surgical Tools and Medical Devices. presents the latest information and techniques in the emerging field of surface engineered biomedical devices and surgical tools, and analyzes the interaction between nanotechnology, nanomaterials, and tools for surgical applications. Chapters of the book describe developments in coatings for heart valves, stents, hip and knee joints, cardiovascular devices, orthodontic applications, and regenerative materials such as bone substitutes. Chapters are also dedicated to the performance of surgical tools and dental tools and describe how nanostructured surfaces can be created for the purposes of improving cell adhesion between medical devices and the human body..
出版日期Book 20071st edition
关键词Implantat; Monitor; Nanotube; biomaterial; bone; carbon nanotubes; corrosion; deposition; implant; medical de
版次1
doihttps://doi.org/10.1007/978-0-387-27028-9
isbn_softcover978-1-4899-9862-0
isbn_ebook978-0-387-27028-9
copyrightSpringer-Verlag US 2007
The information of publication is updating

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Anodization: A Promising Nano-Modification Technique of Titanium-based Implants for Orthopedic Appl surface when exposed to air or other oxygen containing environments. This oxide passive layer is typically 2 to 5 nm thick and is responsible for the well-documented corrosion resistance property of titanium and its alloys. Because of this and their excellent mechanical properties, titanium and its
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Titanium Dioxide Coatings in Medical Device Applications,y used white pigment because of its brightness and very high refractive index (.=2.4). Applications include filler pigment in paints, cosmetics, pharmaceuticals, food products (such as E171, e.g., white lettering on M&Ms) and toothpaste. When deposited as a thin film, its refractive index and color
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Bonelike Graft for Regenerative Bone Applications,general, there are two types of bones in the skeleton, namely, the flat bones, i.e., skull bones, scapula, mandible, ilium, and the long bones, i.e., tibia, femur and humerus. In principle, bone serves the following three main functions in human bodies: (i) acts as a mechanical support; (ii) is the
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Machining Cancellous Bone Prior to Prosthetic Implantation,ter shell and a core of porous, cellular material. This configuration minimizes the weight of the bone over a fairly large load-bearing area. As patients become older, weight loss can result in fractures that can be alleviated by using implants at an earlier age.
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Titanium and Titanium Alloy Applications in Medicine,ugh titanium is as strong as some steels, its density is only half of that of steel. Titanium is broadly used in a number of fields, including aerospace, power generation, automotive, chemical and petrochemical, sporting goods, dental and medical industries, [1–3].
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