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用于无线主动心脏监测的运动液体电极的磁控。

Magnetic Manipulation of Locomotive Liquid Electrodes for Wireless Active Cardiac Monitoring.

机构信息

Department of Materials Science and Engineering, Yonsei University, Seoul 03722, Republic of Korea.

KIURI Institute, Yonsei University, Seoul 03722, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2023 Jun 21;15(24):28954-28963. doi: 10.1021/acsami.3c03724. Epub 2023 Jun 7.

Abstract

For electrocardiogram (ECG) detection, the position of conventional patch-type electrodes based on solid-state metals are difficult to manipulate after attachment and also can lead to poor interface with stretchable, rough skin surfaces. Herein, we present a liquid form of ECG electrodes that can be magnetically reconfigured on human skin by providing its conformal interfacing. These electrodes consist of biocompatible liquid-metal droplets where magnetic particles are homogeneously dispersed, and their conformal contact with skin can yield significantly low impedance as well as high signal-to-noise ratio of ECG peaks. These electrodes are also capable of complex motions such as linear movements, splitting, and merging under external magnetic fields. Furthermore, magnetic manipulation of each electrode position on human skin enables precise monitoring of ECG signals with the change in ECG vectors. The integration of liquid-state electrodes with electronic circuitry demonstrates wireless and continuous ECG monitoring while magnetically moving this entire system on human skin.

摘要

对于心电图(ECG)检测,传统的基于固态金属的贴片式电极在附着后其位置难以操作,并且与可拉伸的粗糙皮肤表面的界面也可能较差。在此,我们提出了一种液体形式的心电图电极,通过提供其共形界面,可以通过磁场在人体皮肤上重新配置。这些电极由生物相容性的液态金属液滴组成,其中磁性颗粒均匀分散,它们与皮肤的共形接触可以产生显著低的阻抗以及高的 ECG 峰的信噪比。这些电极还能够在外部磁场下进行复杂的运动,例如线性运动、分裂和合并。此外,通过磁场操纵人体皮肤上的每个电极位置,可以随着 ECG 向量的变化实现对 ECG 信号的精确监测。液态电极与电子电路的集成实现了无线和连续的 ECG 监测,同时可以在人体皮肤上移动整个系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cefb/10288434/e5a0c40f20aa/am3c03724_0002.jpg

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