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Wearable and Implantable Mechanical Energy Harvesters for Self-Powered Biomedical Systems

机译:用于自供电生物医学系统的可穿戴和可植入机械式能量采集器

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In this issue of Acs Nano, Tang et al. investigate the ability of a triboelectric nanogenerator (TENG) to self-power a low-level laser cure system for osteogenesis by studying the efficiency of a bone remodeling laser treatment that is powered by a skin-patch-like TENG instead of a battery. We outline this field by highlighting the motivations for self-powered biomedical systems and by discussing recent progress in nanogenerators. We note the overlap between biomedical devices and TENGs and their dawning synergy, and we highlight key prospects for future developments. Biomedical systems should be more autonomous. This advance could improve their body integration and fields of action, leading to new medical diagnostics and treatments. However, future self-powered biomedical systems will need to be more flexible, biocompatible, and biodegradable. These advances hold the promise of enabling new smart autonomous biomedical systems and contributing significantly to the Internet of Things.
机译:在本期Acs Nano中,Tang等人。通过研究由类似皮肤贴片的TENG代替电池供电的骨骼重塑激光治疗的效率,研究了摩擦电纳米发电机(TENG)为低级激光固化系统自供电的能力,以用于成骨。我们通过强调自供电生物医学系统的动机并讨论纳米发电机的最新进展来概述该领域。我们注意到生物医学设备和TENG之间的重叠之处以及它们的协同作用,并且强调了未来发展的关键前景。生物医学系统应更具自主性。这一进步可以改善他们的身体整合和作用范围,从而带来新的医学诊断和治疗方法。但是,未来的自供电生物医学系统将需要更加灵活,生物相容性和可生物降解性。这些进步有望实现新的智能自主生物医学系统,并为物联网做出重大贡献。

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