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Flexible and stretchable electronics for wearable healthcare devices and minimally invasive surgical tools

机译:用于可穿戴医疗设备和微创手术工具的柔性和可伸缩电子设备

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Recent advances in soft electronics have attracted great attention, largely due to their potential applications in personalized, bio-integrated healthcare devices. The mechanical mismatch between conventional electronic/optoelectronic devices and soft human tissues/organs have presented many challenges, such as the low signal-to-noise ratio of biosensors because of the incomplete integration of rigid devices with the body, inflammation and excessive immune responses of implanted stiff devices originated from friction and their foreign nature to biotic systems, and the considerable discomfort and consequent stress experienced by users when wearing/implanting these devices. Ultra-flexible and stretchable electronic devices are being highlighted due to their low system modulus and the intrinsic system-level softness that are important to solve these issues. Here, we describe our unique strategies for the nano-material synthesis and fabrication, their seamless assembly and integration, and the design and development of corresponding wearable healthcare devices and minimally invasive surgical tools. These bioelectronic systems fully utilize recent breakthroughs in unconventional soft electronics based on nanomaterials to address unsolved issues in clinical medicine and to provide new opportunities in the personalized healthcare.
机译:柔软电子产品的最新进展引起了极大的关注,主要是由于它们在个性化的生物综合医疗设备中的潜在应用。传统电子/光电器件和软人组织/器官之间的机械失配呈现了许多挑战,例如生物传感器的低信噪比,因为刚性装置与身体的不完全集成,炎症和过度免疫应答植入的硬件源于摩擦和外国性质到生物系统,并且在佩戴/植入这些装置时用户经历了相当大的不适和随之而来的压力。由于它们的低系统模量和本质系统级柔软度来突出显示超柔性和可拉伸的电子设备,这对于解决这些问题很重要。在这里,我们描述了我们对纳米材料合成和制造的独特策略,它们的无缝装配和集成以及相应的可穿戴医疗保健装置的设计和开发和微创手术工具。这些生物电解系统基于纳米材料的非传统软电子设备充分利用了最近的突破,以解决临床医学中未解决的问题,并在个性化医疗保健中提供新的机会。

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