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用于深部组织生物力学特性表征的微型机电设备。

Miniaturized electromechanical devices for the characterization of the biomechanics of deep tissue.

机构信息

Institute of Optoelectronics, Fudan University, Shanghai, China.

Department of Biomedical Engineering, City University of Hong Kong, Hong Kong, China.

出版信息

Nat Biomed Eng. 2021 Jul;5(7):759-771. doi: 10.1038/s41551-021-00723-y. Epub 2021 May 27.

Abstract

Evaluating the biomechanics of soft tissues at depths well below their surface, and at high precision and in real time, would open up diagnostic opportunities. Here, we report the development and application of miniaturized electromagnetic devices, each integrating a vibratory actuator and a soft strain-sensing sheet, for dynamically measuring the Young's modulus of skin and of other soft tissues at depths of approximately 1-8 mm, depending on the particular design of the sensor. We experimentally and computationally established the operational principles of the devices and evaluated their performance with a range of synthetic and biological materials and with human skin in healthy volunteers. Arrays of devices can be used to spatially map elastic moduli and to profile the modulus depth-wise. As an example of practical medical utility, we show that the devices can be used to accurately locate lesions associated with psoriasis. Compact electronic devices for the rapid and precise mechanical characterization of living tissues could be used to monitor and diagnose a range of health disorders.

摘要

评估深度远低于表面的软组织的生物力学特性,并实现高精度和实时测量,将为诊断提供新的机会。在这里,我们报告了微型电磁设备的开发和应用,每个设备都集成了一个振动执行器和一个软应变传感片,可用于动态测量皮肤和其他软组织的杨氏模量,深度约为 1-8mm,具体取决于传感器的特定设计。我们通过一系列合成材料和生物材料以及健康志愿者的皮肤进行了实验和计算,以确定设备的工作原理并评估其性能。设备阵列可用于空间绘制弹性模量图,并沿深度绘制模量图。作为实际医学应用的一个例子,我们展示了这些设备可用于准确定位与银屑病相关的病变。用于快速精确地机械表征活体组织的紧凑型电子设备可用于监测和诊断多种健康障碍。

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