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Titlebook: Implantable Neural Prostheses 2; Techniques and Engin David Zhou,Elias Greenbaum Book 2010 Springer-Verlag New York 2010 Biomedical applica

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书目名称Implantable Neural Prostheses 2
副标题Techniques and Engin
编辑David Zhou,Elias Greenbaum
视频video
概述Describes basic techniques and engineering approaches for the design of implantable neural prosthetic devices.Covers topics from biocompatibility to microelectronics, packaging, and recording techniqu
丛书名称Biological and Medical Physics, Biomedical Engineering
图书封面Titlebook: Implantable Neural Prostheses 2; Techniques and Engin David Zhou,Elias Greenbaum Book 2010 Springer-Verlag New York 2010 Biomedical applica
描述Signi?cant progress has been made in the development of neural prostheses for restoration of human functions and improvement of the quality of life. Biomedical engineers and neuroscientists around the world are working to improve the design and performance of existing devices and to develop novel devices for arti?cial vision, arti?cial limbs, and brain-machine interfaces. This book, Implantable Neural Prostheses 2: Techniques and Engineering Approaches, is part two of a two-volume sequence that describes state-of-the-art advances in techniques associated with implantable neural prosthetic devices. The techniques covered include biocompatibility and biostability, hermetic packaging, electrochemical techniques for neural stimulation applications, novel electrode materials and testing, thin-?lm ?exible microelectrode arrays, in situ char- terization of microelectrode arrays, chip-size thin-?lm device encapsulation, microchip-embedded capacitors and microelectronics for recording, stimulation, and wireless telemetry. The design process in the development of medical devices is also discussed. Advances in biomedical engineering, microfabrication technology, and neu- science have led to i
出版日期Book 2010
关键词Biomedical application; Implantable Device; Medtronic; Motor Prosthetic Devices; Neural Prosthetic Techn
版次1
doihttps://doi.org/10.1007/978-0-387-98120-8
isbn_softcover978-1-4614-2467-3
isbn_ebook978-0-387-98120-8Series ISSN 1618-7210 Series E-ISSN 2197-5647
issn_series 1618-7210
copyrightSpringer-Verlag New York 2010
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David Zhou,Elias GreenbaumDescribes basic techniques and engineering approaches for the design of implantable neural prosthetic devices.Covers topics from biocompatibility to microelectronics, packaging, and recording techniqu
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Biological and Medical Physics, Biomedical Engineeringhttp://image.papertrans.cn/i/image/462507.jpg
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Thin-Film Microelectrode Arrays for Biomedical Applications,Several techniques for electrode modification with nanostructures are described, including carbon nanotube and conductive polymer nanotube coatings. Biocompatibility is described in the context of central nervous system response to chronically implanted devices, which leads to the eventual development of a glial scar.
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Technology Advances and Challenges in Hermetic Packaging for Implantable Medical Devices,aging/materials engineers to improve the existing packaging methods, and to develop new methods. Reliable hermetic micropackaging technologies are the key to a wide utilization of microelectromechanical systems (MEMS) in miniaturized implantable medical devices.
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Microelectronics of Recording, Stimulation, and Wireless Telemetry for Neuroprosthetics: Design andsist of those basic circuits are explained with emphasis on trade-offs which should be considered carefully to achieve optimal design. Several state-of-art systems such as integrated wireless neural-recording systems and retinal prostheses are presented to explain how the fundamental knowledge and principles are used in the real applications.
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An Effective Design Process for the Successful Development of Medical Devices,n that is simple, straightforward, and not overburdening..This chapter gives an overview of the design and development of a medical device. It also gives some guidance and advice about the developmental process. Finally, it gives some case examples of pitfalls that real companies have experienced in their medical device development.
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