首页> 外文会议>IEEE International Conference on Bioinformatics and Bioengineering >Automated Differentiation between Normal Sinus Rhythm, Atrial Tachycardia, Atrial Flutter and Atrial Fibrillation during Electrophysiology
【24h】

Automated Differentiation between Normal Sinus Rhythm, Atrial Tachycardia, Atrial Flutter and Atrial Fibrillation during Electrophysiology

机译:电生理过程中正常窦性节律,心房心动过速,心房颤动和心房颤动之间的自动分化

获取原文

摘要

Intracardiac Electrogram (IEGM) are examined during Cardiac Electrophysiology (EP) for detection, differentiation, analysis and treatment of different arrhythmias. The arrhythmia detection involves EP stimulation, observing IEGM response on monitor screens, and manual evaluation of IEGM key features. The process is time consuming and requires high level of expertise of Electro physiologists. During an EP stimulation process, a patient may develop Atrial Fibrillation (AF) and it is important for patient to be taken out of the AF before further proceeding with the procedure. It is required to automate the arrhythmia detection process during an EP study for real time monitoring of the patient condition and safety. In our previous work, successful detection of Atrio-Ventricular Reentrant Tachycardia and Atrio-Ventricular Nodal Re-entry Tachycardia was achieved in time domain. This work has been undertaken to automatically detect the AF as well as differentiate it from Atrial Flutter (AFL), Atrial Tachycardia (AT) and Normal Sinus Rhythm (NSR). In proposed work, non parametric technique has been applied on atrial IEGM signal for estimation of Dominant frequency (DF) to find out atrial activation rate during NSR, AT, AFL and AF. A new spectral parameter, Average Power Spectral Ratio (APSR), has been defined for ensuring reliability of DF for AF detection as well as differentiation of AF from other atrial arrhythmias. The proposed system successfully detects and differentiates between NSR, AT, AFL and AF with an accuracy of 99.52%. The proposed system can also be effectively used for additional therapeutic application by implantable cardioverter defibrillators.
机译:在心脏电生理(EP)期间检查心内电镜(IEGM),用于检测,分化,分析和治疗不同心律失常。心律失常检测涉及EP刺激,观察IGM对监视器屏幕的响应,以及IGM关键特征的手动评估。该过程是耗时的,需要高水平的电生理学家的专业知识。在EP刺激过程中,患者可能会出现心房颤动(AF),并且在进一步进行该过程之前,患者将从AF中取出是重要的。需要在EP研究期间自动化心律失常检测过程,以实时监测患者状况和安全性。在我们以前的工作中,在时域中取得了成功的Atrio-anyriculary reentrant心动过速检测和Atrio-anyriculary Nodal重新进入心动过速。已经开展了这项工作,以自动检测到AF,以及将其区分离出心房扑动(AFL),心房心动过速(AT)和正常窦性节律(NSR)。在所提出的工作中,非参数技术已经应用于心房IGM信号,用于估计显性频率(DF),以在NSR,AT,AFL和AF期间找到心房激活速率。已经确定了新的光谱参数,平均功率谱比(APSR),用于确保AF检测的DF的可靠性以及来自其他心间心律失常的AF的分化。所提出的系统成功地检测和区分NSR,AFL和AF,精度为99.52 %。所提出的系统也可以通过可植入的心脏除颤器有效地用于额外的治疗应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号