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一种用于快速稳定非接触式心电图信号采集的吸湿传感器电极。

A Hygroscopic Sensor Electrode for Fast Stabilized Non-Contact ECG Signal Acquisition.

作者信息

Fong Ee-May, Chung Wan-Young

机构信息

Department of Electronic Engineering, Pukyong National University, Busan 608-737, Korea.

出版信息

Sensors (Basel). 2015 Aug 5;15(8):19237-50. doi: 10.3390/s150819237.

Abstract

A capacitive electrocardiography (cECG) technique using a non-invasive ECG measuring technology that does not require direct contact between the sensor and the skin has attracted much interest. The system encounters several challenges when the sensor electrode and subject's skin are weakly coupled. Because there is no direct physical contact between the subject and any grounding point, there is no discharge path for the built-up electrostatic charge. Subsequently, the electrostatic charge build-up can temporarily contaminate the ECG signal from being clearly visible; a stabilization period (3-15 min) is required for the measurement of a clean, stable ECG signal at low humidity levels (below 55% relative humidity). Therefore, to obtain a clear ECG signal without noise and to reduce the ECG signal stabilization time to within 2 min in a dry ambient environment, we have developed a fabric electrode with embedded polymer (FEEP). The designed hygroscopic FEEP has an embedded superabsorbent polymer layer. The principle of FEEP as a conductive electrode is to provide humidity to the capacitive coupling to ensure strong coupling and to allow for the measurement of a stable, clear biomedical signal. The evaluation results show that hygroscopic FEEP is capable of rapidly measuring high-accuracy ECG signals with a higher SNR ratio.

摘要

一种采用非侵入式心电图测量技术的电容式心电图(cECG)技术引起了广泛关注,该技术无需传感器与皮肤直接接触。当传感器电极与受试者皮肤耦合较弱时,该系统会遇到一些挑战。由于受试者与任何接地点之间没有直接的物理接触,因此积累的静电荷没有放电路径。随后,静电荷的积累会暂时干扰心电图信号,使其难以清晰可见;在低湿度水平(相对湿度低于55%)下测量干净、稳定的心电图信号需要一段稳定期(3 - 15分钟)。因此,为了在干燥的环境中获得清晰无噪声的心电图信号,并将心电图信号稳定时间缩短至2分钟以内,我们开发了一种带有嵌入式聚合物的织物电极(FEEP)。设计的吸湿FEEP有一个嵌入式超吸收聚合物层。FEEP作为导电电极的原理是为电容耦合提供湿度,以确保强耦合,并允许测量稳定、清晰的生物医学信号。评估结果表明,吸湿FEEP能够以更高的信噪比快速测量高精度的心电图信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c94/4570369/8ff0c43c9ba5/sensors-15-19237-g001.jpg

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