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Power Approaches for Implantable Medical Devices

机译:植入式医疗设备的电源方法

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摘要

Implantable medical devices have been implemented to provide treatment and to assess in vivo physiological information in humans as well as animal models for medical diagnosis and prognosis, therapeutic applications and biological science studies. The advances of microanotechnology dovetailed with novel biomaterials have further enhanced biocompatibility, sensitivity, longevity and reliability in newly-emerged low-cost and compact devices. Close-loop systems with both sensing and treatment functions have also been developed to provide point-of-care and personalized medicine. Nevertheless, one of the remaining challenges is whether power can be supplied sufficiently and continuously for the operation of the entire system. This issue is becoming more and more critical to the increasing need of power for wireless communication in implanted devices towards the future healthcare infrastructure, namely mobile health (m-Health). In this review paper, methodologies to transfer and harvest energy in implantable medical devices are introduced and discussed to highlight the uses and significances of various potential power sources.
机译:植入式医疗设备已被实现以提供治疗并评估人体内的生理信息以及用于医学诊断和预后,治疗应用和生物学研究的动物模型。微/纳米技术的进步与新型生物材料相吻合,进一步增强了新兴的低成本紧凑型设备的生物相容性,灵敏度,寿命和可靠性。具有传感和治疗功能的闭环系统也已经开发出来,可以提供即时护理和个性化医疗。然而,剩下的挑战之一是,是否可以为整个系统的运行充分而连续地供电。对于面向未来医疗保健基础设施(即移动医疗(m-Health))的植入式设备中无线通信的电力需求日益增长,此问题变得越来越关键。在这篇综述文章中,将介绍和讨论在可植入医疗设备中转移和收集能量的方法,以突出各种潜在电源的用途和重要性。

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