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Pathway of transient electronics towards connected biomedical applications

机译:瞬态电子器件迈向互联生物医学应用的途径

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Transient electronic devices have shown promising applications in hardware security and medical implants with diagnosing therapeutics capabilities since their inception. Control of the device transience allows the device to “dissolve at will” after its functional operation, leading to the development of on-demand transient electronics. This review discusses the recent developments and advantages of triggering strategies (e.g., electrical, thermal, ultrasound, and optical) for controlling the degradation of on-demand transient electronics. We also summarize bioresorbable sensors for medical diagnoses, including representative applications in electrophysiology and neurochemical sensing. Along with the profound advancements in medical diagnosis, the commencement of therapeutic systems such as electrical stimulation and drug delivery for the biomedical or medical implant community has also been discussed. However, implementing a transient electronic system in real healthcare infrastructure is still in its infancy. Many critical challenges still need to be addressed, including strategies to decouple multimodal sensing signals, dissolution selectivity in the presence of multiple stimuli, and a complete sensing–stimulation closed-loop system. Therefore, the review discusses future opportunities in transient decoupling sensors and robust transient devices, which are selective to a particular stimulus and act as hardware-based passwords. Recent advancements in closed-loop controller-enabled electronics have also been analyzed for future opportunities of using data-driven artificial intelligence-powered controllers in fully closed-loop transient systems.
机译:瞬态电子设备显示有前途应用程序在硬件安全和医疗植入物与诊断治疗因为他们的《盗梦空间》的功能。设备无常允许设备“随意解散”功能操作,导致的发展随需应变的瞬态电子产品。讨论了最近的事态发展和优势触发策略(如电气、热、超声和光学)控制随需应变的瞬态的退化电子产品。传感器用于医学诊断,包括代表应用电生理学和神经化学传感。深厚的医学诊断的进步,开始治疗系统等电刺激和药物输送生物医学或医学植入社区也被讨论。电子系统在实际医疗保健基础设施仍处于起步阶段。关键的挑战仍然需要解决,包括分离多模式的策略传感信号,解散的选择性多重刺激,和一个完整的sensing-stimulation闭环系统。因此,回顾讨论未来在瞬态解耦传感器和机会健壮的瞬态设备,选择性一个特定的刺激和基于硬件的密码。controller-enabled电子也分析了未来使用的机会数据驱动的人工intelligence-powered在完全闭环瞬态控制器系统。

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