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连续长期监测中心房颤动的低复杂度检测

Low-complexity detection of atrial fibrillation in continuous long-term monitoring.

作者信息

Petrėnas Andrius, Marozas Vaidotas, Sörnmo Leif

机构信息

Biomedical Engineering Institute, Kaunas University of Technology, K. Barsausko st. 59, LT-51423 Kaunas, Lithuania.

Biomedical Engineering Institute, Kaunas University of Technology, K. Barsausko st. 59, LT-51423 Kaunas, Lithuania; Faculty of Electrical and Electronics Engineering, Kaunas University of Technology, Kaunas, Lithuania.

出版信息

Comput Biol Med. 2015 Oct 1;65:184-91. doi: 10.1016/j.compbiomed.2015.01.019. Epub 2015 Jan 28.

Abstract

This study describes an atrial fibrillation (AF) detector whose structure is well-adapted both for detection of subclinical AF episodes and for implementation in a battery-powered device for use in continuous long-term monitoring applications. A key aspect for achieving these two properties is the use of an 8-beat sliding window, which thus is much shorter than the 128-beat window used in most existing AF detectors. The building blocks of the proposed detector include ectopic beat filtering, bigeminal suppression, characterization of RR interval irregularity, and signal fusion. With one design parameter, the performance can be tuned to put more emphasis on avoiding false alarms due to non-AF arrhythmias or more emphasis on detecting brief AF episodes. Despite its very simple structure, the results show that the detector performs better on the MIT-BIH Atrial Fibrillation database than do existing detectors, with high sensitivity and specificity (97.1% and 98.3%, respectively). The detector can be implemented with just a few arithmetical operations and does not require a large memory buffer thanks to the short window.

摘要

本研究描述了一种心房颤动(AF)检测器,其结构非常适合检测亚临床AF发作,并适合在电池供电设备中实现,用于连续长期监测应用。实现这两个特性的一个关键方面是使用8拍滑动窗口,因此该窗口比大多数现有AF检测器中使用的128拍窗口短得多。所提出的检测器的组成部分包括异位搏动滤波、成对搏动抑制、RR间期不规则性表征和信号融合。通过一个设计参数,可以调整性能,使其更侧重于避免由于非AF心律失常引起的误报,或者更侧重于检测短暂的AF发作。尽管其结构非常简单,但结果表明,该检测器在MIT-BIH心房颤动数据库上的表现优于现有检测器,具有高灵敏度和特异性(分别为97.1%和98.3%)。由于窗口较短,该检测器只需进行几次算术运算即可实现,并且不需要大内存缓冲区。

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