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Titlebook: Design of Efficient and Safe Neural Stimulators; A Multidisciplinary Marijn van Dongen,Wouter Serdijn Book 2016 Springer International Pub

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书目名称Design of Efficient and Safe Neural Stimulators
副标题A Multidisciplinary
编辑Marijn van Dongen,Wouter Serdijn
视频video
概述Provides a single-source, multidisciplinary reference to the field of neural stimulation, bridging an important knowledge gap among the fields of bioelectricity, neuroscience, neuroengineering and mic
丛书名称Analog Circuits and Signal Processing
图书封面Titlebook: Design of Efficient and Safe Neural Stimulators; A Multidisciplinary  Marijn van Dongen,Wouter Serdijn Book 2016 Springer International Pub
描述.This book discusses the design of neural stimulator systems which are used for the treatment of a wide variety of brain disorders such as Parkinson’s, depression and tinnitus.  Whereas many existing books treating neural stimulation focus on one particular design aspect, such as the electrical design of the stimulator, this book uses a multidisciplinary approach: by combining the fields of neuroscience, electrophysiology and electrical engineering a thorough understanding of the complete neural stimulation chain is created (from the stimulation IC down to the neural cell). This multidisciplinary approach enables readers to gain new insights into stimulator design, while context is provided by presenting innovative design examples..
出版日期Book 2016
关键词High frequency neural stimulator design; Implantable neural stimulators; Neural stimulator systems; Saf
版次1
doihttps://doi.org/10.1007/978-3-319-28131-5
isbn_softcover978-3-319-80278-7
isbn_ebook978-3-319-28131-5Series ISSN 1872-082X Series E-ISSN 2197-1854
issn_series 1872-082X
copyrightSpringer International Publishing Switzerland 2016
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Electrode–Tissue Interface During a Stimulation Cycleerefore protect the electrode–tissue interface. In Sect. 3.2 it is verified whether this is indeed the case. In the last section a novel stimulation technique is introduced that aims to return the electrode–tissue interface to equilibrium after a stimulation cycle.
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Frick/Knöll Baukonstruktionslehre 1of the neural membrane will be derived. In the second section the stimulation of neural tissue will be discussed. It will be seen how the passage of current through electrodes will ultimately lead to physiological change in the neural tissue.
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Frick/Knöll Baukonstruktionslehre 2hap. 5 the stimulation waveform can benefit from the complex dynamics of the axon membrane in order to induce recruitment in a more efficient way. Furthermore, burst stimulation can be considered to be a special stimulation waveform as well, which has also shown to have advantages.
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Frick/Knöll Baukonstruktionslehre 2differ from the traditional constant current/voltage approach and that offer advantages in terms of efficiency and/or safety. In Chap. 2 it was shown that electrical stimulation can be considered at three different levels: the electrode level, the tissue level, and the neuronal level.
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