用于可穿戴和植入式应用的软机械传感器。

Rithvik Papani, Yang Li, Sihong Wang
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引用次数: 0

摘要

对压力、应变、剪切和振动等生物力学信号的可穿戴和可植入传感技术可实现多种人体集成应用,包括皮肤生命体征监测、运动跟踪、内部器官状况监测、恢复丧失/受损的机械感知等。此类传感器与人体皮肤和组织的机械适配性对于提高其生物兼容性和传感精度至关重要。因此,近十年来,人们在开发软机械传感器方面做出了巨大努力。为了满足不同可穿戴和植入应用的要求,此类传感器被赋予了各种附加特性,使其更适合各种人体集成应用。在本综述中,我们以压力、应变、剪切和振动四大类软机械传感器为重点,讨论了最近在材料和器件设计方面为实现几种重要特性而进行的创新,包括柔韧性和可拉伸性、生物可吸收性和生物可降解性、自愈特性、透气性、透明度、无线通信能力和高密度集成。接着,我们讨论了在可穿戴和植入式应用中使用此类新型软机械传感器的研究现状,并在此基础上进一步讨论了未来的研究需求。本文归类于诊断工具 > 生物传感 诊断工具 > 纳米诊断设备 可植入材料和外科技术 > 纳米材料和植入物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Soft mechanical sensors for wearable and implantable applications.

Wearable and implantable sensing of biomechanical signals such as pressure, strain, shear, and vibration can enable a multitude of human-integrated applications, including on-skin monitoring of vital signs, motion tracking, monitoring of internal organ condition, restoration of lost/impaired mechanoreception, among many others. The mechanical conformability of such sensors to the human skin and tissue is critical to enhancing their biocompatibility and sensing accuracy. As such, in the recent decade, significant efforts have been made in the development of soft mechanical sensors. To satisfy the requirements of different wearable and implantable applications, such sensors have been imparted with various additional properties to make them better suited for the varied contexts of human-integrated applications. In this review, focusing on the four major types of soft mechanical sensors for pressure, strain, shear, and vibration, we discussed the recent material and device design innovations for achieving several important properties, including flexibility and stretchability, bioresorbability and biodegradability, self-healing properties, breathability, transparency, wireless communication capabilities, and high-density integration. We then went on to discuss the current research state of the use of such novel soft mechanical sensors in wearable and implantable applications, based on which future research needs were further discussed. This article is categorized under: Diagnostic Tools > Biosensing Diagnostic Tools > Diagnostic Nanodevices Implantable Materials and Surgical Technologies > Nanomaterials and Implants.

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