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用于无创心输出量监测的便携式阻抗心动图系统的设计与实现

Design and Implementation of a Portable Impedance Cardiography System for Noninvasive Stroke Volume Monitoring.

作者信息

Yazdanian Hassan, Mahnam Amin, Edrisi Mehdi, Esfahani Morteza Abdar

机构信息

Department of Biomedical Engineering, University of Isfahan, Isfahan, Iran.

Department of Biomedical Engineering, University of Isfahan, Isfahan, Iran; Medical Image and Signal Processing Research Center, Isfahan University of Medical Sciences, Isfahan, Iran.

出版信息

J Med Signals Sens. 2016 Jan-Mar;6(1):47-56.

Abstract

Measurement of the stroke volume (SV) and its changes over time can be very helpful for diagnosis of dysfunctions in the blood circulatory system and monitoring their treatments. Impedance cardiography (ICG) is a simple method of measuring the SV based on changes in the instantaneous mean impedance of the thorax. This method has received much attention in the last two decades because it is noninvasive, easy to be used, and applicable for continuous monitoring of SV as well as other hemodynamic parameters. The aim of this study was to develop a low-cost portable ICG system with high accuracy for monitoring SV. The proposed wireless system uses a tetrapolar configuration to measure the impedance of the thorax at 50 kHz. The system consists of carefully designed precise voltage-controlled current source, biopotential recorder, and demodulator. The measured impedance was analyzed on a computer to determine SV. After evaluating the system's electronic performance, its accuracy was assessed by comparing its measurements with the values obtained from Doppler echocardiography (DE) on 5 participants. The implemented ICG system can noninvasively provide a continuous measure of SV. The signal to noise ratio of the system was measured above 50 dB. The experiments revealed that a strong correlation (r = 0.89) exists between the measurements by the developed system and DE (P < 0.05). ICG as the sixth vital sign can be measured simply and reliably by the developed system, but more detailed validation studies should be conducted to evaluate the system performance. There is a good promise to upgrade the system to a commercial version domestically for clinical use in the future.

摘要

测量每搏输出量(SV)及其随时间的变化对于诊断血液循环系统功能障碍和监测其治疗情况非常有帮助。阻抗心动图(ICG)是一种基于胸部瞬时平均阻抗变化来测量SV的简单方法。在过去二十年中,这种方法备受关注,因为它是非侵入性的,易于使用,并且适用于连续监测SV以及其他血流动力学参数。本研究的目的是开发一种低成本、高精度的便携式ICG系统来监测SV。所提出的无线系统采用四极配置在50 kHz频率下测量胸部阻抗。该系统由精心设计的精密压控电流源、生物电位记录器和解调器组成。对测量得到的阻抗在计算机上进行分析以确定SV。在评估系统的电子性能后,通过将其测量值与5名参与者的多普勒超声心动图(DE)测量值进行比较来评估其准确性。所实现的ICG系统能够非侵入性地连续测量SV。该系统的信噪比测量值高于50 dB。实验表明,所开发系统的测量值与DE测量值之间存在强相关性(r = 0.89)(P < 0.05)。所开发的系统能够简单且可靠地测量作为第六生命体征的ICG,但应进行更详细的验证研究以评估系统性能。未来有望将该系统升级为国内临床使用的商用版本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1f1/4786963/0b191fff972f/JMSS-6-47-g001.jpg

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