首页> 外文会议>Engineering in Medicine and Biology Society, 2003. Proceedings of the 25th Annual International Conference of the IEEE >Transcutaneous powering of implantable micro-stimulators for functional restoration of impaired gastrointestinal motility
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Transcutaneous powering of implantable micro-stimulators for functional restoration of impaired gastrointestinal motility

机译:植入式微刺激器的经皮动力,可恢复胃肠动力的功能

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摘要

Recent experiments in functional electrical stimulation of gastrointestinal organs have demonstrated effective techniques for producing controlled movement of content in dogs and humans. However, as a result of the substantive power requirements of the proposed stimulation techniques, which impede the use of traditional power supply methods such as implantable batteries, the feasibility of transcutaneously powering multiple implanted micro-stimulators through inductive coupling remains an unresolved issue. This paper proposes the use of a well-established circuit model for calculating the transcutaneous power transfer to an implanted micro-stimulator. In addition, techniques for modeling all aspects of the inductive link are proposed. The comprehensive model is then used in the design of an inductive link capable of delivering over 80 mW of power to multiple implanted micro-stimulators.
机译:胃肠器官功能性电刺激的最新实验表明,有效的技术可在狗和人体内产生受控的内容物运动。然而,由于所提出的刺激技术的实质性功率需求,阻碍了诸如可植入电池之类的传统电源供应方法的使用,通过电感耦合为多个植入的微型刺激器经皮供电的可行性仍未解决。本文提出了使用完善的电路模型来计算向植入式微刺激器的经皮功率传递的方法。另外,提出了用于对归纳链接的所有方面进行建模的技术。然后,将综合模型用于感应链接的设计中,该感应链接能够向多个植入的微刺激器提供超过80 mW的功率。

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