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The effects of 40 Hz low-pass filtering on the spatial QRS-T angleud

机译:40 Hz低通滤波对空间QRs-T角的影响 ud

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摘要

The spatial QRS-T angle (SA) is a vectorcardiographic (VCG) parameter that has been identified as a marker for changes in the ventricular depolarization and repolarization sequence. The SA is defined as the angle subtended by the mean QRS-vector and the mean T- vector of the VCG. The SA is typically obtained from VCG data that is derived from the resting 12-lead electrocardiogram (ECG). Resting 12-lead ECG data is commonly recorded using a low-pass filter with a cutoff frequency of 150 Hz. The ability of the SA to quantify changes in the ventricular depolarization and repolarization sequence make the SA potentially attractive in a number of different 12-lead ECG monitoring applications. However, the 12-lead ECG data that is obtained in such monitoring applications is typically recorded using a low-pass filter cutoff frequency of 40 Hz. The aim of this research was to quantify the differences between the SA computed using 40 Hz low- pass filtered ECG data (SA40) and the SA computed using 150 Hz low-pass filtered ECG data (SA150). We assessed the difference between the SA40 and the SA150 using a study population of 726 subjects. The differences between the SA40 and the SA150 were quantified as systematic error (mean difference) and random error (span of Bland-Altman 95% limits of agreement). The systematic error between the SA40 and the SA150 was found to be -0.126° [95% confidence interval: -0.146° to - 0.107°]. The random error was quantified 1.045° [95% confidence interval: 0.917° to 1.189°]. The findings of this research suggest that it is possible to accurately determine the value of the SA when using 40 Hz low-pass filtered ECG data. This finding indicates that it is possible to record the SA in applications that require the utilization of 40 Hz low-pass ECG monitoring filters.
机译:空间QRS-T角(SA)是矢量心电图(VCG)参数,已被确定为心室去极化和复极化序列变化的标志。 SA被定义为由VCG的平均QRS向量和平均T向量对向的角度。 SA通常是从静止12导联心电图(ECG)导出的VCG数据获得的。静止的12导联心电图数据通常使用截止频率为150 Hz的低通滤波器记录。 SA量化心室去极化和复极化序列变化的能力使SA在许多不同的12导联ECG监护应用中具有潜在的吸引力。但是,在此类监视应用程序中获得的12导联ECG数据通常使用40 Hz的低通滤波器截止频率进行记录。本研究的目的是量化使用40 Hz低通滤波的ECG数据(SA40)计算的SA与使用150 Hz低通滤波的ECG数据(SA150)计算的SA之间的差异。我们使用726名受试者的研究人群评估了SA40和SA150之间的差异。 SA40和SA150之间的差异被量化为系统误差(均值差异)和随机误差(Bland-Altman一致度的95%范围)。发现SA40和SA150之间的系统误差为-0.126°[95%置信区间:-0.146°至-0.107°]。随机误差量化为1.045°[95%置信区间:0.917°至1.189°]。这项研究的发现表明,当使用40 Hz低通滤波的ECG数据时,可以准确确定SA的值。该发现表明可以在需要使用40 Hz低通ECG监视滤波器的应用中记录SA。

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