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Improved characterization of HRV signals based on instantaneous frequency features estimated from quadratic time-frequency distributions with data-adapted kernels

机译:基于从具有数据自适应内核的二次时频分布估计的瞬时频率特征改进的HRV信号表征

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The analysis of heart rate variability (HRV) provides a non-invasive tool for assessing the autonomic regulation of cardiovascular system. Quadratic time-frequency distributions (TFDs) have been used to account for the non-stationarity of HRV signals, but their performance is affected by cross-terms. This study presents an improved type of quadratic TFD with a lag-independent kernel (LIK-TFD) by introducing a new parameter defined as the minimal frequency distance among signal components. The resulting TFD with this LIK can effectively suppress the cross-terms while maintaining the time-frequency (TF) resolution needed for accurate characterization of HRV signals. Results of quantitative and qualitative tests on both simulated and real HRV signals show that the proposed LIK-TFDs outperform other TFDs commonly used in HRV analysis. The findings of the study indicate that these LIK-TFDs provide more reliable TF characterization of HRV signals for extracting new instantaneous frequency (IF) based clinically related features. These IF based measurements shown to be important in detecting perinatal hypoxic insult - a severe cause of morbidity and mortality in newborns.
机译:心率变异性(HRV)的分析提供了一种用于评估心血管系统自主调节的非侵入性工具。二次时频分布(TFD)已用于说明HRV信号的非平稳性,但是其性能受交叉项影响。通过引入定义为信号分量之间的最小频率距离的新参数,本研究提出了一种具有滞后无关内核(LIK-TFD)的改进型二次TFD。使用此LIK生成的TFD可以有效抑制交叉项,同时保持准确表征HRV信号所需的时频(TF)分辨率。对模拟和实际HRV信号进行定量和定性测试的结果表明,所提出的LIK-TFD优于HRV分析中常用的其他TFD。研究结果表明,这些LIK-TFD为HRV信号提供了更可靠的TF表征,可用于提取基于临床相关特征的新瞬时频率(IF)。这些基于IF的测量结果对检测围产期低氧损伤很重要-新生儿发病率和死亡率的严重原因。

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