Determinants of photoplethysmography signal quality at the wrist.

PLOS digital health Pub Date : 2025-06-27 eCollection Date: 2025-06-01 DOI:10.1371/journal.pdig.0000585
Peter H Charlton, Vaidotas Marozas, Elisa Mejía-Mejía, Panicos A Kyriacou, Jonathan Mant
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Abstract

Wrist photoplethysmogram (PPG) signals are widely used for physiological monitoring in consumer devices. However, the PPG is highly susceptible to noise, which can reduce the accuracy of monitored parameters. The aim of this study was to identify factors which influence PPG signal quality. Data from the Aurora-BP dataset were used, consisting of reflectance wrist PPG signals measured from 1,142 subjects of varying ages and health statuses. Measurements were acquired in supine, sitting, and standing postures, and with the sensor held at different heights. Three signal quality metrics were calculated: the signal-to-noise ratio (SNR), the perfusion index (PI), and the template-matching correlation coefficient (TMCC). When comparing between postures with the sensor held at a natural height, quality was greatest in the supine position (SNR: 18.6 dB), followed by sitting with the arm resting in the lap (13.7 dB), and lowest whilst standing with the arm hanging alongside (9.0 dB) (p < 0.001). Signal quality increased as the arm was raised to heart height: whilst sitting, quality was lowest with the arm alongside the body (10.5 dB), and increased when the sensor was held in the lap (13.7 dB) and at heart height (15.5 dB) (p < 0.001). Similar trends were observed for the TMCC and PI. Findings were mixed for the influence of participant characteristics on signal quality. The SNR and TMCC, but not the PI, increased with age. The SNR either decreased or remained constant at darker skin tones when controlling for PPG DC amplitude, compared to constant or increased when allowing DC amplitude to vary. In conclusion, this study identified the impacts of posture and sensor height on signal quality, with highest qualities observed in the supine posture and with the sensor at heart height. It also highlights the importance of adjusting LED light intensity to maintain signal quality across skin tones.

腕部光电容积脉搏波信号质量的决定因素。
腕部光电容积图(PPG)信号被广泛应用于消费类设备的生理监测。然而,PPG极易受到噪声的影响,从而降低了监测参数的准确性。本研究的目的是找出影响PPG信号质量的因素。研究使用了来自Aurora-BP数据集的数据,包括从1142名不同年龄和健康状况的受试者中测量的反射手腕PPG信号。测量是在仰卧,坐着和站着的姿势下获得的,并且传感器保持在不同的高度。计算三个信号质量指标:信噪比(SNR)、灌注指数(PI)和模板匹配相关系数(TMCC)。当将传感器放置在自然高度时进行比较时,仰卧位的质量最高(信噪比:18.6 dB),其次是手臂放在膝盖上的坐姿(13.7 dB),而手臂悬挂在旁边的站立时质量最低(9.0 dB)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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