School of Mechanical and Manufacturing Engineering, University of New South Wales, Sydney, NSW, 2052, Australia.
Alan G. MacDiarmid NanoTech Institute, The University of Texas at Dallas, Richardson, TX, 75080, USA.
Adv Mater. 2024 Oct;36(42):e2404492. doi: 10.1002/adma.202404492. Epub 2024 Jul 6.
Wearable and implantable active medical devices (WIMDs) are transformative solutions for improving healthcare, offering continuous health monitoring, early disease detection, targeted treatments, personalized medicine, and connected health capabilities. Commercialized WIMDs use primary or rechargeable batteries to power their sensing, actuation, stimulation, and communication functions, and periodic battery replacements of implanted active medical devices pose major risks of surgical infections or inconvenience to users. Addressing the energy source challenge is critical for meeting the growing demand of the WIMD market that is reaching valuations in the tens of billions of dollars. This review critically assesses the recent advances in energy harvesting and storage technologies that can potentially eliminate the need for battery replacements. With a key focus on advanced materials that can enable energy harvesters to meet the energy needs of WIMDs, this review examines the crucial roles of advanced materials in improving the efficiencies of energy harvesters, wireless charging, and energy storage devices. This review concludes by highlighting the key challenges and opportunities in advanced materials necessary to achieve the vision of self-powered wearable and implantable active medical devices, eliminating the risks associated with surgical battery replacement and the inconvenience of frequent manual recharging.
可穿戴和植入式有源医疗器械(WIMD)是改善医疗保健的变革性解决方案,提供连续的健康监测、早期疾病检测、靶向治疗、个性化医疗和互联健康功能。商业化的 WIMD 使用原电池或可充电电池为其传感、驱动、刺激和通信功能供电,而植入式有源医疗器械的定期更换电池会给患者带来重大的手术感染风险或使用不便。解决能源供应的挑战对于满足价值数十亿美元的 WIMD 市场的需求至关重要。本文批判性地评估了可潜在消除电池更换需求的能量收集和存储技术的最新进展。本文重点关注先进材料,这些材料可以使能量收集器能够满足 WIMD 的能源需求,探讨了先进材料在提高能量收集器、无线充电和储能设备效率方面的关键作用。本文最后强调了实现自供电可穿戴和植入式有源医疗器械的愿景所需的先进材料的关键挑战和机遇,消除了与手术更换电池和频繁手动充电相关的风险和不便。