血氧仪测量心率变异性的局限性。

Guohua Lu, Fang Yang
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引用次数: 54

摘要

测量心率变异性(HRV)被广泛用于评估自主神经系统功能。它需要精确测量连续心跳之间的间隔。这可以通过记录心电图(ECG)来实现,这是一种无创且广泛可用的方法。然而,在记录和分析ECG痕迹中固有的方法学问题促使人们寻找测量连续心跳间隔的替代方法。记录血氧脉动(photoplethysmography-PPG)也方便、无创且广泛可用,已被认为是心电图的有效替代方法。此外,有人声称,血氧仪产生的脉冲波形可能比由ECG测量的R-R间隔更实用,特别是对于动态记录。因此,我们将PPG与心电记录进行比较,采用相同的信号分析技术对PPG和心电记录同时进行测量HRV。比较5分钟的记录时间,在时间、频域和非线性分析中,PPG和ECG得出的HRV测量值之间存在非常高的相关性。然而,我们发现,与ECG相比,PPG信号特别容易受到运动伪影的影响,这使得在相当一部分PPG记录中根本无法进行任何HRV分析。我们的研究结果表明,尽管PPG在理想条件下提供了准确的脉间间隔来测量心率变异性,但由于容易受到运动伪影的影响,它的可靠性较低。因此,在动态记录或其他活动期间进行的记录中,不太可能证明心电图的实际替代方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Limitations of oximetry to measure heart rate variability measures.

Measuring heart rate variability (HRV) is widely used to assess autonomic nervous system function. It requires accurate measurement of the interval between successive heartbeats. This can be achieved from recording the electrocardiogram (ECG), which is non-invasive and widely available. However, methodological problems inherent in recording and analyzing ECG traces have motivated a search for alternative means of measuring the interval between successive heartbeats. Recording blood oxygenation pulsations (photoplethysmography-PPG) is also convenient, non-invasive and widely available, and has been suggested as an effective alternative to ECG to derive HRV. Moreover, it has been claimed that the pulse waveforms produced by oximetry may be more practicable than R-R intervals measured from the by ECG, especially for ambulatory recordings. We have therefore compared PPG with ECG recordings to measure HRV applying the same signal analysis techniques to PPG and ECG recordings made simultaneously. Comparison of 5 min recording epochs demonstrated a very high degree of correlation, in temporal, frequency domains and non-linear analysis, between HRV measures derived from the PPG and ECG. However, we found that the PPG signal is especially vulnerable to motion artifacts when compared to the ECG, preventing any HRV analysis at all in a significant minority of PPG recordings. Our results demonstrate that even though PPG provides accurate interpulse intervals to measure heart rate variability under ideal conditions, it is less reliable due to its vulnerability to motion artifacts. Therefore it is unlikely to prove a practical alternative to the ECG in ambulatory recordings or recordings made during other activities.

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