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一种用于实时监测人体生理的可穿戴式宽带模拟生物阻抗分析仪。

A Wearable Wideband Analog Bio-Impedance Analyzer for Real-Time Monitoring of Human Physiology.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2022 Jul;2022:918-921. doi: 10.1109/EMBC48229.2022.9871827.

Abstract

Continuous monitoring of electrophysiological activities of the human body is a significant step toward the effective prognosis, diagnosis, and management of functional disorders and cardiovascular diseases. This paper presents the development of a wireless system for the real-time acquisition of hemodynamics data and ambulatory monitoring of body composition based on electrical bio-impedance (Bio-Z) analysis. The developed system is composed of a low-power wearable unit and a stationary unit connected to a computer. The system conducts the non-radiative non-invasive Bio-Z analysis over a wide bandwidth of 1 MHz through four independent channels. The proposed analog approach detects the physiological activity by extracting the magnitude of the mixed Bio-Z signal, in real-time. A graphical user interface was designed for monitoring, analysis, and storage of the processed data. Moreover, the amplitude and frequency of the electrical excitation signals can be instructed through the user interface, wirelessly. Bench-top validation of the system demonstrated the delivery of current signals over a wide frequency range of 1 kHz - 1 MHz and peak-to-peak amplitude of up to 20 mA. Besides, the system was able to detect the magnitude of the envelope of the mixed signal with amplitude modulation depths as low as 0.1 %. Clinical Relevance- The system provides the real-time monitoring of cardiac activity and blood pulsation in human arteries. In addition, due to the configurability of the frequency and amplitude of the current injection circuit, the system is an excellent candidate to be utilized for real-time medical imaging through electrical bio-impedance tomography as well as electrical bio-impedance spectroscopy.

摘要

连续监测人体的电生理活动是有效预测、诊断和管理功能障碍和心血管疾病的重要步骤。本文提出了一种基于电生物阻抗(Bio-Z)分析的无线系统,用于实时获取血液动力学数据和身体成分的动态监测。所开发的系统由一个低功耗可穿戴单元和一个与计算机相连的固定单元组成。该系统通过四个独立的通道进行宽达 1 MHz 的非辐射非侵入式 Bio-Z 分析。所提出的模拟方法通过实时提取混合 Bio-Z 信号的幅度来检测生理活动。设计了一个图形用户界面,用于监测、分析和存储处理后的数据。此外,通过用户界面可以无线指示电激励信号的幅度和频率。该系统在台式机上进行了验证,结果表明可以在 1 kHz 至 1 MHz 的宽频率范围内传输电流信号,峰值-峰值幅度高达 20 mA。此外,该系统能够检测到幅度调制深度低至 0.1%的混合信号包络的幅度。临床相关性-该系统提供了人体动脉中心脏活动和血液搏动的实时监测。此外,由于电流注入电路的频率和幅度可配置,该系统是通过电生物阻抗断层扫描和电生物阻抗光谱进行实时医学成像的理想候选者。

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