Touch-based system for beat-to-beat impedance cardiogram acquisition and hemodynamic parameters estimation

Dionisije Sopic, S. Murali, F. Rincón, David Atienza Alonso
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引用次数: 3

Abstract

Among all cardiovascular diseases, congestive heart failure (CHF) has a very high rate of hospitalization and mortality. In order to prevent hospitalization, there is a strong need to identify patients at risk of a CHF event by estimating a set of relevant hemodynamic parameters that will allow physicians to detect its early onset. Today, one of the most popular non-invasive methods to obtain these parameters is through the acquisition of electrocardiogram (ECG) and impedance cardiogram (ICG) by using large hospital systems with electrodes placed on the chest and thorax region. In order to be useful in an ambulatory setting, it is important to obtain an ultra-low power wearable system for acquiring the ICG and ECG, and to detect CHF. In this paper, we present a touch-based ultra-low power device for real-time ICG and ECG signal acquisition, and hemodynamic parameters estimation. We also propose methods for noise cancellation and for calculating the hemodynamic parameters. In addition, a comparative evaluation of susceptibility to different measuring positions is presented. Our proposed design is highly correlated with traditional systems (> 80%), but able to work with very low power budgets, thus allowing long duration of operation of over four days on a single battery charge.
基于触摸的搏动阻抗心动图采集和血流动力学参数估计系统
在所有心血管疾病中,充血性心力衰竭(CHF)的住院率和死亡率非常高。为了防止住院,有必要通过估计一组相关的血流动力学参数来识别有CHF事件风险的患者,这将使医生能够发现其早期发病。今天,获得这些参数的最流行的非侵入性方法之一是通过使用大型医院系统将电极放置在胸部和胸部区域,通过获取心电图(ECG)和阻抗心电图(ICG)。为了在动态环境中发挥作用,获得一个超低功耗的可穿戴系统来获取ICG和ECG,并检测CHF是很重要的。在本文中,我们提出了一种基于触摸的超低功耗设备,用于实时采集ICG和ECG信号,以及血流动力学参数估计。我们还提出了消除噪声和计算血流动力学参数的方法。此外,还对不同测量位置的敏感性进行了比较评价。我们提出的设计与传统系统高度相关(> 80%),但能够以非常低的功耗预算工作,从而允许单次电池充电超过四天的长时间运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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