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Application of Coherence Function for Calculating Time Shifts between Axial Corneal Displacements and Electrical Heart Activity

机译:相干函数在计算轴向角膜位移与心电活动之间的时移的应用

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摘要

The heart activity is one of the most important factors influencing the ocular pulsation. It is known that the high correlation between axial corneal displacements and cardiovascular system activity exists. However, phase relationships between those factors are still unknown. The main goal of the research was to measure noninvasively longitudinal corneal apex displacement (LCAD) of the left eye, applying an ultrasonic sensor. Synchronically, the electrical heart activity (ECG) was recorded in Einthoven's triangle. To find phase dependencies between these signals the coherence function was used. It is observed that coherence value, computed between the first five harmonics of both signals, is different for shifted signals along each other. Therefore, the time delay between the ECG and LCAD signals, for which particular harmonic achieves the maximum of coherence function, was examined. It can be noticed that for increasing number of the signals' harmonic, the time delay between considered signals decreases. This tendency is clear for both of examined subjects. To receive more information about this phenomenon more subjects should be measured and the statistical test should be introduced to calculate the time delay values. The presented noninvasive method might be helpful in the future for measuring the IOP pulse and estimating hemodynamic status of the eye.
机译:心脏活动是影响眼动的最重要因素之一。众所周知,轴向角膜位移与心血管系统活动之间存在高度相关性。但是,这些因素之间的相位关系仍然未知。该研究的主要目的是使用超声波传感器测量左眼的非侵入性纵向角膜顶点位移(LCAD)。同步地,心电活动(ECG)记录在Einthoven的三角形中。为了找到这些信号之间的相位依赖性,使用了相干函数。可以看出,两个信号的前五个谐波之间计算出的相干值对于彼此偏移的信号是不同的。因此,检查了ECG和LCAD信号之间的时间延迟,为此,特定谐波实现了最大的相干功能。可以注意到,随着信号谐波次数的增加,所考虑信号之间的时间延迟减小。对于两个检查对象来说,这种趋势是显而易见的。为了获得有关此现象的更多信息,应测量更多的对象,并应引入统计检验以计算时间延迟值。所提出的非侵入性方法可能在将来有助于测量IOP脉冲和估计眼睛的血液动力学状态。

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