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Ambient temperature effect on pulse rate variability as an alternative to heart rate variability in young adult

机译:环境温度对脉搏率变异性的影响可替代年轻人的心率变异性

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摘要

Pulse rate variability (PRV) is a promising physiological and analytic technique used as a substitute for heart rate variability (HRV). PRV is measured by pulse wave from various devices including mobile and wearable devices but HRV is only measured by an electrocardiogram (ECG). The purpose of this study was to evaluate PRV and HRV at various ambient temperatures and elaborate on the interchangeability of PRV and HRV. Twenty-eight healthy young subjects were enrolled in the experiment. We prepared temperature-controlled rooms and recorded the ECG and photoplethysmography (PPG) under temperature-controlled, constant humidity conditions. The rooms were kept at 17, 25, and 38 °C as low, moderate, and high ambient temperature environments, respectively. HRV and PRV were derived from the synchronized ECG and PPG measures and they were studied in time and frequency domain analysis for PRV/HRV ratio and pulse transit time (PTT). Similarity and differences between HRV and PRV were determined by a statistical analysis. PRV/HRV ratio analysis revealed that there was a significant difference between HRV and PRV for a given ambient temperature; this was with short-term variability measures such as SDNN SDSD or RMSSD, and HF-based variables including HF, LF/HF and normalized HF. In our analysis the absolute value of PTT was not significantly influenced by temperature. Standard deviation of PTT, however, showed significant difference not only between low and moderate temperatures but also between low and high temperatures. Our results suggest that ambient temperature induces a significant difference in PRV compared to HRV and that the difference becomes greater at a higher ambient temperature.
机译:脉搏率变异性(PRV)是一种有前途的生理和分析技术,可替代心率变异性(HRV)。 PRV通过各种设备(包括移动设备和可穿戴设备)的脉搏波进行测量,而HRV仅通过心电图(ECG)进行测量。这项研究的目的是评估各种环境温度下的PRV和HRV,并详细说明PRV和HRV的互换性。该实验招募了28名健康的年轻受试者。我们准备了温度可控的房间,并在温度可控的恒定湿度条件下记录了ECG和光电容积描记法(PPG)。将房间分别保持在17、25和38°C的低温,中温和高温环境中。 HRV和PRV源自同步的ECG和PPG测量,并在时域和频域分析中研究了PRV / HRV比率和脉冲渡越时间(PTT)。通过统计分析确定HRV和PRV之间的相似性和差异。 PRV / HRV比率分析表明,在给定的环境温度下,HRV和PRV之间存在显着差异。这是通过短期可变性度量(例如SDNN SDSD或RMSSD)以及基于HF的变量(包括HF,LF / HF和归一化HF)进行的。在我们的分析中,PTT的绝对值不受温度的显着影响。但是,PTT的标准偏差不仅在低温和中温之间而且在低温和高温之间均显示出显着差异。我们的结果表明,与HRV相比,环境温度引起PRV的显着差异,并且在较高的环境温度下,差异会变得更大。

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