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- W2555413355 abstract "Faculty of Electrical Engineering, Mathematics and Computer Science CE-MS-2005-06 In recent years, biomedical engineering has seen phenomenal technological achievements. A particular subfield biomedical, microelectronic implants has emerged and, in time, gained much momentum. Starting with the implantable pacemaker some 50 years ago, such devices have been increasingly investigated over the last two decades, resulting in a plethora of actual systems of diverse capabilities and for various biomedical applications. However, the special nature of the implant application environment, i.e. the inside of the human body, poses many stringent design constraints, the two most important being low power consumption and small implant size. These have traditionally limited the design space of implant researchers and developers. Nonetheless, over the last few years, phenomenal advances in microelectronic technology, featuring ultra-low-power transistors of miniature size, have somewhat relaxed these two constraints, and have redefined what is ”feasible” and what is not in implant design. Thus, new design approaches can now be investigated for developing new generations of powerful, multi-featured, tiny implants. To this end, a clear view of the current state of the art must, first, be acquired. By studying existing implementations and design choices, any deficiencies or overlooked issues as well as potentials or hidden trends can be successfully identified. The microelectronic technology being the vehicle, such an (unprecedented) study will be the basis for any future implementations. Motivated by the above observations, in this thesis we assume two tasks. Firstly, we perform a broad and scrutinous survey of existing implantable systems over a period of, approximately, 20 years. In this survey we collect, organize, at times clarify and, finally, report information for each studied system. As a second task and based on the findings of the survey, an exhaustive classification of the studied systems is presented and complemented with an in-depth annotation of the findings. Observations are made and general conclusions are drawn. Implantable microelectronic devices A comprehensive study" @default.
- W2555413355 created "2016-11-30" @default.
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- W2555413355 date "2005-01-01" @default.
- W2555413355 modified "2023-09-24" @default.
- W2555413355 title "Implantable microelectronic devices" @default.
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