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A Reliable Method for Rhythm Analysis during Cardiopulmonary Resuscitation

机译:心肺复苏过程中一种可靠的心律分析方法

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摘要

Interruptions in cardiopulmonary resuscitation (CPR) compromise defibrillation success. However, CPR must be interrupted to analyze the rhythm because although current methods for rhythm analysis during CPR have high sensitivity for shockable rhythms, the specificity for nonshockable rhythms is still too low. This paper introduces a new approach to rhythm analysis during CPR that combines two strategies: a state-of-the-art CPR artifact suppression filter and a shock advice algorithm (SAA) designed to optimally classify the filtered signal. Emphasis is on designing an algorithm with high specificity. The SAA includes a detector for low electrical activity rhythms to increase the specificity, and a shocko-shock decision algorithm based on a support vector machine classifier using slope and frequency features. For this study, 1185 shockable and 6482 nonshockable 9-s segments corrupted by CPR artifacts were obtained from 247 patients suffering out-of-hospital cardiac arrest. The segments were split into a training and a test set. For the test set, the sensitivity and specificity for rhythm analysis during CPR were 91.0% and 96.6%, respectively. This new approach shows an important increase in specificity without compromising the sensitivity when compared to previous studies.
机译:心肺复苏(CPR)中断会影响除颤成功。但是,必须中断CPR才能分析心律,因为尽管目前在CPR中进行心律分析的方法对可电击心律有很高的敏感性,但不可电击心律的特异性仍然太低。本文介绍了一种新的心肺复苏术心律分析方法,该方法结合了两种策略:最新的心肺复苏术伪影抑制滤波器和设计用于对滤波后的信号进行最佳分类的电击建议算法(SAA)。重点在于设计具有高特异性的算法。该SAA包括一个用于检测低电活动节律以提高特异性的检测器,以及一个基于支持向量机分类器的使用倾斜和频率特征的电击/无电击决策算法。在这项研究中,从247例院外心脏骤停患者中获得了1185个可被CPR伪影破坏的可电击和6482个不可电击的9秒段。细分分为训练和测试集。对于测试集,CPR进行节奏分析的敏感性和特异性分别为91.0%和96.6%。与以前的研究相比,这种新方法显示出特异性的显着提高而又不损害灵敏度。

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