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一种基于按压频率估计心肺复苏伪迹的最小均方滤波器。

A least mean-square filter for the estimation of the cardiopulmonary resuscitation artifact based on the frequency of the compressions.

作者信息

Irusta Unai, Ruiz Jesús, de Gauna Sofía Ruiz, Eftestøl Trygve, Kramer-Johansen Jo

机构信息

Department of Electronics and Telecommunications Engineering, University of Basque Country, Bilbao 48013, Spain.

出版信息

IEEE Trans Biomed Eng. 2009 Apr;56(4):1052-62. doi: 10.1109/TBME.2008.2010329. Epub 2009 Jan 13.

Abstract

Cardiopulmonary resuscitation (CPR) artifacts caused by chest compressions and ventilations interfere with the rhythm diagnosis of automated external defibrillators (AED). CPR must be interrupted for a reliable diagnosis. However, pauses in chest compressions compromise the defibrillation success rate and reduce perfusion of vital organs. The removal of the CPR artifacts would enable compressions to continue during AED rhythm analysis, thereby increasing the likelihood of resuscitation success. We have estimated the CPR artifact using only the frequency of the compressions as additional information to model it. Our model of the artifact is adaptively estimated using a least mean-square (LMS) filter. It was tested on 89 shockable and 292 nonshockable ECG samples from real out-of-hospital sudden cardiac arrest episodes. We evaluated the results using the shock advice algorithm of a commercial AED. The sensitivity and specificity were above 95% and 85%, respectively, for a wide range of working conditions of the LMS filter. Our results show that the CPR artifact can be accurately modeled using only the frequency of the compressions. These can be easily registered after small changes in the hardware of the CPR compression pads.

摘要

由胸外按压和通气引起的心肺复苏(CPR)伪差会干扰自动体外除颤器(AED)的节律诊断。为了进行可靠的诊断,必须中断心肺复苏。然而,胸外按压的中断会影响除颤成功率并减少重要器官的灌注。去除心肺复苏伪差将使胸外按压能够在AED节律分析期间继续进行,从而提高复苏成功的可能性。我们仅使用按压频率作为额外信息来估计心肺复苏伪差并对其进行建模。我们使用最小均方(LMS)滤波器自适应地估计伪差模型。该模型在来自真实院外心脏骤停事件的89个可电击和292个不可电击的心电图样本上进行了测试。我们使用商用AED的电击建议算法评估结果。对于LMS滤波器的广泛工作条件,灵敏度和特异性分别高于95%和85%。我们的结果表明,仅使用按压频率就可以准确地对心肺复苏伪差进行建模。在心肺复苏按压垫的硬件进行小改动后,这些频率可以很容易地记录下来。

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