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Method to Filter ECGs and Evaluate Clinical Parameter Distortion using Realistic ECG Model Parameter Fitting

机译:过滤ECG的方法,并使用现实的ECG模型参数拟合评估临床参数失真

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By fitting a previously published nonlinear model for generating realistic ECG to waveforms collected from a healthy human subject, and using a nonlinear least-squares optimization procedure, the authors demonstrate that significant points (P, Q, R, S, and T) on the ECG can be determined to an arbitrary accuracy. The model-fitting routine runs in real-time on a 3GHz PC. Coloured (1/f{sup}β)noise is then added to the ECG in order to evaluate the fitting accuracy under a variety of recording conditions. A method for determining noise levels (and colour) in real ECGs using the residual of a singular valued decomposition is described. Furthermore, a method for evaluating the filter is described which allows an application-specific evaluation of the filter in terms of the distortion in the QRS width and amplitude, the ST-level, the QT interval, the PR-interval, and the fiducial point location. Using these methods, the model-based filter is shown to introduce insignificant clinical distortion in the QT interval and QRS width down to an SNR≥ 0dB for β < 2. The fiducial point location is shown to be insignificantly distorted (< 1ms) for an SNR≥ 2dB, and the ST-level is stable down to SNR> 12dB. PR interval is more sensitive to noise due to the low amplitude nature of the P-wave. In general, the filter performance is degraded by increasing β.
机译:通过拟合从健康人类主体收集的生成现实ECG的先前公布的非线性模型,以及使用非线性最小二乘优化程序,作者证明了以下重要点(P,Q,R,S和T) ECG可以确定为任意准确性。模型拟合例程在3GHz PC上实时运行。然后将有色(1 / f {sup}β)噪声加入ECG,以便在各种记录条件下评估拟合精度。描述了一种使用奇异值分解的残差确定真实ECG中的噪声电平(和颜色)的方法。此外,描述了一种用于评估滤波器的方法,其允许在QRS宽度和幅度,ST级,QT间隔,PR间隔和基准点的失真方面对滤波器的特定于滤波器进行特定于滤波器的评估地点。使用这些方法,示出了基于模型的滤波器在Qt间隔内引入微不足道的临床失真,QRS宽度下降到SNR≥0DB的β<2。基准点定位显示为微不足道地扭曲(<1ms) SNR≥2DB,ST级稳定到SNR> 12dB。由于P波的低幅度性质,Pr间隔对噪声更敏感。通常,通过增加β降低滤波器性能。

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