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改善室颤与心动过速鉴别方法。

Methods for Improved Discrimination Between Ventricular Fibrillation and Tachycardia.

出版信息

IEEE Trans Biomed Eng. 2018 Oct;65(10):2143-2151. doi: 10.1109/TBME.2017.2785442. Epub 2017 Dec 20.

Abstract

Differentiating between ventricular tachycardia and ventricular fibrillation in clinical and preclinical research is based on subjective definitions that have yet to be validated using objective criteria. This is partly due to shortcomings in the discrimination ability of current objective approaches, typified by the algorithms that perform cardiac rhythm classification using low-dimensional feature representations of electrocardiogram (ECG) signals. These identify ventricular tachyarrhythmias, but do not discriminate between ventricular tachycardia and ventricular fibrillation. In order to address this limitation, we have tested the utility of high-dimensional feature vectors, in particular, magnitude spectra and classifier ensembles that take into account local context information from ECG signals. Using these approaches, we categorized rhythms into three classes: ventricular tachycardia, ventricular fibrillation, and any other possible rhythm, defined here as "nonventricular rhythms." The high-dimensional spectral features achieved a substantial improvement in the discrimination between ventricular tachycardia and ventricular fibrillation, but exhibited a decreased sensitivity to nonventricular rhythms. In order to deal with the reduced sensitivity for the detection of nonventricular rhythms, methods were elaborated for combining the strengths of different feature spaces, and this substantially improved the identification sensitivities of all three classes.

摘要

在临床和临床前研究中,区分室性心动过速和心室颤动基于主观定义,这些定义尚未使用客观标准进行验证。这部分是由于当前客观方法的区分能力存在缺陷,其典型表现为使用心电图(ECG)信号的低维特征表示来执行心脏节律分类的算法。这些算法可以识别室性心动过速,但不能区分室性心动过速和心室颤动。为了解决这一限制,我们测试了高维特征向量的实用性,特别是幅度谱和分类器集合,它们考虑了来自 ECG 信号的局部上下文信息。使用这些方法,我们将节律分为三类:室性心动过速、心室颤动和任何其他可能的节律,这里定义为“非室性节律”。高维频谱特征在区分室性心动过速和心室颤动方面取得了实质性的提高,但对非室性节律的敏感性降低。为了解决对非室性节律检测的敏感性降低的问题,我们详细阐述了结合不同特征空间优势的方法,这大大提高了所有三种节律的识别敏感性。

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