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一种时变非参数方法,用于评估与心率变异性无关的 QT 变异性变化。

A Time-Varying Nonparametric Methodology for Assessing Changes in QT Variability Unrelated to Heart Rate Variability.

出版信息

IEEE Trans Biomed Eng. 2018 Jul;65(7):1443-1451. doi: 10.1109/TBME.2017.2758925. Epub 2017 Oct 6.

Abstract

OBJECTIVE

To propose and test a novel methodology to measure changes in QT interval variability (QTV) unrelated to RR interval variability (RRV) in nonstationary conditions.

METHODS

Time-frequency coherent and residual spectra representing QTV related (QTVrRRV) and unrelated (QTVuRRV) to RRV, respectively, are estimated using time-frequency Cohen's class distributions. The proposed approach decomposes the nonstationary output spectrum of any two-input one-output model with uncorrelated inputs into two spectra representing the information related and unrelated to one of the two inputs, respectively. An algorithm to correct for the bias of the time-frequency coherence function between QTV and RRV is proposed to provide accurate estimates of both QTVuRRV and QTVrRRV. Two simulation studies were conducted to assess the methodology in challenging nonstationary conditions and data recorded during head-up tilt in 16 healthy volunteers were analyzed.

RESULTS

In the simulation studies, QTVuRRV changes were tracked with only a minor delay due to the filtering necessary to estimate the nonstationary spectra. The correlation coefficient between theoretical and estimated patterns was even for extremely noisy recordings (signal to noise ratio (SNR) in QTV dB). During head-up tilt, QTVrRRV explained the largest proportion of QTV, whereas QTVuRRV showed higher relative increase than QTV or QTVrRRV in all spectral bands ( for most pairwise comparisons).

CONCLUSION

The proposed approach accurately tracks changes in QTVuRRV. Head-up tilt induced a slightly greater increase in QTVuRRV than in QTVrRRV.

SIGNIFICANCE

The proposed index QTVuRRV may represent an indirect measure of intrinsic ventricular repolarization variability, a marker of cardiac instability associated with sympathetic ventricular modulation and sudden cardiac death.

摘要

目的

提出并测试一种新的方法来测量 QT 间期变异(QTV)在非平稳条件下与 RR 间期变异(RRV)无关的变化。

方法

使用时频 Cohen 类分布分别估计代表与 RRV 相关(QTVrRRV)和不相关(QTVuRRV)的 QTV 的时频相干和残差谱。所提出的方法将任何两个输入一个输出模型的非平稳输出谱分解为两个谱,分别代表与两个输入之一相关和不相关的信息。提出了一种校正 QTV 与 RRV 之间时频相干函数偏差的算法,以提供 QTVuRRV 和 QTVrRRV 的准确估计。进行了两项模拟研究,以评估在具有挑战性的非平稳条件下的方法,并分析了 16 名健康志愿者在头高位倾斜期间记录的数据。

结果

在模拟研究中,由于估计非平稳谱所需的滤波,QTVuRRV 的变化仅略有延迟。理论和估计模式之间的相关系数即使在记录噪声非常大的情况下(QTV 的信噪比(SNR)为 dB)也保持不变。在头高位倾斜期间,QTVrRRV 解释了 QTV 的最大比例,而 QTVuRRV 在所有光谱带中比 QTV 或 QTVrRRV 显示出更高的相对增加(对于大多数成对比较)。

结论

所提出的方法可以准确地跟踪 QTVuRRV 的变化。头高位倾斜引起的 QTVuRRV 增加略大于 QTVrRRV。

意义

所提出的 QTVuRRV 指数可能代表内在心室复极变异性的间接测量,这是与交感神经心室调制和心脏性猝死相关的心脏不稳定性的标志物。

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