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Feasibility of a predictive algorithm for identifying characteristic events of cardiac activation: results of a model study

机译:识别心脏激活特征事件的预测算法的可行性:模型研究的结果

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By the use of body surface ECG signals, generated by a thoracic volume conductor and heart model, the validity of an algorithm suggested for the detection of the characteristic events of ventricular activation was tested. In the computations the volume conductor was considered by a real-shaped inhomogeneous torso, the generator of the electric sources by a propagating heart model with simplified geometry. The correct characteristic event classification was known from the simulated epicardial and cross-sectional activation maps. Results show, that by an optimal adjustment of the decision threshold of detection, a sensitivity of 60% and a specificity of 80% can be achieved. The detailed analysis of the false negative detections revealed, that the missed event have probably less importance in real shaped hearts, consequently, an increase in sensitivity may be anticipated without a compromise in specificity.
机译:通过使用由胸腔导体和心脏模型生成的体表ECG信号,测试了建议用于检测心室激活特征事件的算法的有效性。在计算中,体导体被考虑为实形的不均匀躯干,电源的生成器为具有简化几何形状的传​​播心脏模型。从模拟的心外膜和横截面激活图可以知道正确的特征事件分类。结果表明,通过对检测决策阈值的最佳调整,可以实现60%的灵敏度和80%的特异性。对假阴性检测的详细分析表明,漏诊事件在真实形状的心脏中的重要性可能较低,因此,可以预期灵敏度会有所提高,而不会影响特异性。

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