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A template matched-filter based scheme for detection and estimation of t-wave alternans

机译:基于模板匹配滤波器的t波交替信号检测和估计方案

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Microvolt T-wave alternans (TWA) is among the important risk stratifiers for sudden cardiac death, having significant prognostic ability. A new detection theoretic technique, called template matched-filter detector (TMFD), is proposed for TWA detection and estimation. Unlike classical schemes, which estimate the TWA amplitude directly, the proposed strategy targets alternant energy within the repolarization complexes. The scheme is evaluated using realistically synthesized ECG signals and alternant waveforms with varying temporal distributions, synthetic noises and real artifacts. The implementation of TMFD is discussed in the context of two different templates, i.e., median (TMFD-1) and mean (TMFD-2). Detection performance and estimation accuracy is validated against three classical schemes, i.e., spectral method (SM), modified moving average method (MMAM) and correlation method (CM). The proposed scheme outperforms CM over the entire range of SNR with both the templates and all noise types. Detection performance of TMFD approaches SM when the signal is corrupted with real artifacts. In Gaussian noise, performance of TMFD-1 is comparable with SM when detection probability is maximized, and is 2 dB degraded for Laplacian noise. In terms of estimation accuracy, SM has the least value of bias for all noise types over the low range of SNR. In better signal conditions (SNR - 25 dB), the bias of TMFD approaches SM for alternant magnitude > 40 μV in the Gaussian case and for magnitudes > 20 μV with real noises. The bias of TMFD for real noises is comparable to MMAM for all TWA amplitudes and there is a gap of approximately 20 μV under Gaussian noise for SNR = 10dB. The proposed scheme is also promising for dynamic TWA tracking as it successfully indicates temporal origins and termini of transient alternan episodes through beat to beat estimation statistics.
机译:兆伏T波交替蛋白(TWA)是心脏猝死的重要危险分层因素之一,具有重要的预后能力。提出了一种新的检测理论技术,称为模板匹配滤波器检测器(TMFD),用于TWA检测和估计。与经典方案不同,经典方案直接估算TWA振幅,所提出的策略的目标是复极化复合体内的交流能量。使用实际合成的ECG信号和具有变化的时间分布,合成噪声和真实伪像的交替波形对方案进行评估。在两个不同的模板(即中位数(TMFD-1)和平均值(TMFD-2))的上下文中讨论了TMFD的实现。针对三种经典方案验证了检测性能和估计精度,即频谱方法(SM),改进的移动平均方法(MMAM)和相关方法(CM)。所提出的方案在模板和所有噪声类型上在SNR的整个范围内均优于CM。当信号被真实伪像破坏时,TMFD的检测性能接近SM。在高斯噪声中,当检测概率最大化时,TMFD-1的性能可与SM媲美,而对于拉普拉斯噪声则性能降低2 dB。在估计精度方面,对于SNR低范围内的所有噪声类型,SM的偏置值最小。在更好的信号条件下(SNR-25 dB),对于高斯情况下的交替幅度> 40μV,在实际噪声下的幅度> 20μV,TMFD的偏置接近SM。对于所有TWA振幅,TMFD的真实噪声偏置均与MMAM相当,并且在SNR = 10dB的高斯噪声下存在约20μV的间隙。所提出的方案对于动态TWA跟踪也是有希望的,因为它通过逐节拍估计统计成功地指示了短暂性交替性发作的时间起源和终点。

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