首页> 外文期刊>Biomedical signal processing and control >Automated Detection And Mapping Of Electrical Activation When Electrogram Morphology Is Complex
【24h】

Automated Detection And Mapping Of Electrical Activation When Electrogram Morphology Is Complex

机译:当电描记图形态复杂时,可以自动检测和映射电激活

获取原文
获取原文并翻译 | 示例

摘要

Background: Mapping of cardiac electrical activity can be difficult when electrogram morphology is complex. Complex morphology (multiple and changing deflections) causes activation maps to vary when constructed by different analysts, particularly at areas with spatially varying conduction pattern. An algorithm was developed to automatically detect electrogram activation time which is robust to complex morphology. Method: Electrograms, many of which were complex, were collected from 320 canine epicardial border zone sites in five experiments. A library of electrogram activation times were manually marked a priori by two expert analysts. Then an algorithm which combined correlation and error functions was used to compare each input electrogram to library electrogram patterns. The closest match of input to library electrogram was used to estimate activation time. Once activation times at 320 sites were determined, activation maps were automatically constructed on a computerized grid. The algorithm was validated by comparison with activation times determined by the analysts. Results: The mean difference between manual and automated marking of activation time in electrograms acquired during reentrant ventricular tachycardia was 2.1 ± 3.9 ms. The mean sensitivity and positive predictive value were 95.9% and 83.8% respectively. The computer-automated marking process was completed within a few seconds and was robust to fractionated electrograms. Measurement error was mostly attributable to 60 Hz noise, which can be rectified with filtering. Conclusions: The automated algorithm is useful for rapid and accurate automatic marking of multichannel electrograms, some of which may be fractionated, as well as for real-time display of activation maps in clinical electrophysiology or research studies.
机译:背景:当电描记图形态复杂时,很难绘制心脏电活动图。复杂的形态(多个变化的偏转)会导致激活图在由不同分析人员构建时发生变化,尤其是在具有空间变化的导电模式的区域。开发了一种算法来自动检测电描记图激活时间,该时间对复杂的形态具有鲁棒性。方法:在五个实验中,从320个犬心外膜边界区部位收集了许多复杂的心电图。两名专家分析员手动将电图激活时间库标记为先验。然后使用结合了相关和误差函数的算法将每个输入电图与库电图模式进行比较。输入与库电图最接近的匹配用于估计激活时间。一旦确定了320个站点的激活时间,就可以在计算机化网格上自动构建激活图。通过与分析人员确定的激活时间进行比较来验证该算法。结果:折返性室性心动过速期间在电描记图中获得的手动和自动激活时间标记之间的平均差为2.1±3.9 ms。平均敏感性和阳性预测值分别为95.9%和83.8%。计算机自动标记过程在几秒钟内完成,并且对分数电描记图很稳定。测量误差主要归因于60 Hz噪声,可以通过滤波对其进行纠正。结论:自动化算法可用于对多通道电描记图进行快速,准确的自动标记,其中一些可能会被分割,以及在临床电生理学或研究中实时显示激活图。

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