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Reconstruction of ECG signals acquired with Conductive Textile Electrodes.

机译:用导电纺织电极重建心电图信号。

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摘要

Physicians' understanding of bio-signals, measured using medical instruments, becomes the foundation of their decisions and diagnoses of patients, as they rely strongly on what the instruments show. Thus, it is critical and very important to ensure that the instruments' readings exactly reflect what is happening in the patient's body so that the detected signal is the real one or at least as close to the real in-body signal as possible and carries all of the appropriate information. This is such an important issue that sometimes physicians use invasive measurements in order to obtain the real bio-signal. Generating an in-body signal from what a measurement device shows is called "signal purification" or "reconstruction," and can be done only when we have adequate information about the interface between the body and the monitoring device. In this research, first, we present a device that we developed for electrocardiogram (ECG) acquisition and transfer to PC. In order to evaluate the performance of the device, we use it to measure ECG and apply conductive textile as our ECG electrode. Then, we evaluate ECG signals captured by different electrodes, specifically traditional gel Ag/AgCl and dry golden plate electrodes, and compare the results. Next, we propose a method to reconstruct the ECG signal from the signal we detected with our device with respect to the interface characteristics and their relation to the detected ECG. The interface in this study is the skin-electrode interface for conductive textiles. In the last stage of this work, we explore the effects of pressure on skin-electrode interface impedance and its parametrical variation.
机译:医师对使用医疗仪器测量的生物信号的理解,成为他们决定和诊断患者的基础,因为他们强烈依赖于仪器显示的内容。因此,确保仪器的读数准确反映患者体内正在发生的事情非常重要且非常重要,以使检测到的信号是真实的信号,或至少尽可能接近真实的体内信号并携带所有信号。适当的信息。这是一个重要的问题,有时医生会使用侵入性测量来获取真实的生物信号。根据测量设备显示的内容生成体内信号称为“信号净化”或“重建”,只有在我们掌握了有关身体与监视设备之间接口的足够信息时,才能进行此操作。在这项研究中,首先,我们介绍一种我们开发的用于心电图(ECG)采集并将其传输到PC的设备。为了评估设备的性能,我们使用它来测量ECG并将导电纺织品用作ECG电极。然后,我们评估由不同电极(尤其是传统的凝胶Ag / AgCl和干金板电极)捕获的ECG信号,并比较结果。接下来,我们针对接口特性及其与检测到的ECG的关系,提出了一种根据设备检测到的信号重建ECG信号的方法。本研究中的界面是导电纺织品的皮肤电极界面。在这项工作的最后阶段,我们探索压力对皮肤电极界面阻抗及其参数变化的影响。

著录项

  • 作者

    Taji, Bahareh.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering Electronics and Electrical.;Computer Science.;Biology Bioinformatics.
  • 学位 M.A.Sc.
  • 年度 2013
  • 页码 96 p.
  • 总页数 96
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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