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Investigation of the Minimum Conditions for Reliable Estimation of Clinically Relevant HRV Measures: Introducing a Novel Approach to the Validation of HRV Measurement Systems

机译:调查临床相关HRV措施可靠估计的最低条件:引入HRV测量系统验证的新方法

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The R-peak localization error (jitter) of a heart rate variability (HRV) system has a great impact on the values of the HRV measures. Only a few studies have analyzed this subject and purely done so from the aspect of choice of sampling frequency. In this study we provide an overview of the various factors that comprise the jitter of a system. We propose a method inspired by the field of signal averaged electrocardiography (SAECG) that allows for a quantification of the jitter of any HRV system that records and stores the raw ECG signal. Furthermore, with this method the differences between the HRV measures of the system and HRV measures corresponding to the physiological truth can be quantified. The method is used to obtain the physiologically true R-peak locations of subjects from Physionet's 'Normal Sinus Rhythm Database'. The effects of jitter are then analyzed via mathematical modelling for short-term and long-term HRV for various HRV measures. The effects of abnormal beats and missed and false detections are analyzed as well.
机译:心率变异性(HRV)系统的R峰值定位误差(抖动)对HRV措施的值产生了很大影响。只有少数研究已经分析了这个主题,并从采样频率的选择方面纯粹这样做。在这项研究中,我们提供包括系统抖动的各种因素的概述。我们提出了一种由信号平均心电图(SAECG)领域启发的方法,该方法允许定量记录和存储原始ECG信号的任何HRV系统的抖动。此外,通过这种方法,可以量化与生理真理的系统和HRV测量之间的HRV测量与生理真理的差异之间的差异。该方法用于获得来自Physooneet'普通窦律数据库'的受试者的生理真正的R峰位置。然后通过用于各种HRV措施的短期和长期HRV的数学建模分析抖动的效果。分析了异常节拍和错失和错误检测的影响。

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