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Implantable Biomedical Microsystems: A New Graduate Course in Biomedical Circuits and Systems

机译:植入式生物医学微系统:生物医学电路和系统的新研究生课程

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摘要

After more than two decades of research on the design and development of implantable biomedical microsystems, it is time now to organize research achievements in this area in a consolidated and pedagogical form. This paper introduces a new graduate course in advanced biomedical circuits and systems. Designed for graduate students with electrical and biomedical engineering backgrounds, this course provides a general overview of the multidisciplinary field of implantable biomedical microsystems. In addition to some introductory material on physiology and biology where needed, this course comprises extensive contents and in-depth discussions on both system- and circuit-level aspects of the design of implantable microsystems. Moreover, this course also deals with issues surrounding design for implantability and testability. Wireless interfacing, signal processing, microelectrode array fabrication, and circuit design for implantable neural recording microsystems are studied extensively. Various design aspects of neural stimulation microsystems, cochlear implants, and visual prostheses are also reviewed briefly.
机译:在对植入式生物医学微系统的设计和开发进行了二十多年的研究之后,现在是时候以合并的和教学的形式来组织该领域的研究成果。本文介绍了高级生物医学电路和系统的新研究生课程。本课程是为具有电气和生物医学工程背景的研究生设计的,它对可植入生物医学微系统的多学科领域进行了概述。除了需要的有关生理学和生物学的入门资料之外,本课程还包括有关植入式微系统设计的系统级和电路级方面的广泛内容和深入讨论。此外,本课程还涉及有关可植入性和可测试性设计的问题。对可植入神经记录微系统的无线接口,信号处理,微电极阵列制造和电路设计进行了广泛的研究。还简要回顾了神经刺激微系统,人工耳蜗和视觉假体的各个设计方面。

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