首页> 外文OA文献 >Pulse transit time measured by photoplethysmography improves the accuracy of heart rate as a surrogate measure of cardiac output, stroke volume and oxygen uptake in response to graded exercise
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Pulse transit time measured by photoplethysmography improves the accuracy of heart rate as a surrogate measure of cardiac output, stroke volume and oxygen uptake in response to graded exercise

机译:通过光电容积描记法测量的脉冲传输时间可提高心率的准确性,作为对分级运动做出反应的心输出量,中风量和摄氧量的替代指标

摘要

Heart rate (HR) is a valuable and widespread measure for physical training programs, although its description of conditioning is limited to the cardiac response to exercise. More comprehensive measures of exercise adaptation include cardiac output ((Q) over dot), stroke volume (SV) and oxygen uptake ((V) over dotO(2)), but these physiological parameters can be measured only with cumbersome equipment installed in clinical settings. In this work, we explore the ability of pulse transit time (PTT) to represent a valuable pairing with HR for indirectly estimating (Q) over dot, SV and (V) over dotO(2) non-invasively. PTT was measured as the time interval between the peak of the electrocardiographic (ECG) R-wave and the onset of the photoplethysmography (PPG) waveform at the periphery (i.e. fingertip) with a portable sensor. Fifteen healthy young subjects underwent a graded incremental cycling protocol after which HR and PTT were correlated with (Q) over dot, SV and (V) over dotO(2) using linear mixed models. The addition of PTT significantly improved the modeling of (Q) over dot, SV and (V) over dotO(2) at the individual level (R-1(2) = 0.419 for SV, 0.548 for (Q) over dot, and 0.771 for (V) over dotO(2)) compared to predictive models based solely on HR (R-1(2) = 0.379 for SV, 0.503 for (Q) over dot, and 0.745 for (V) over dotO(2)). While challenges in sensitivity and artifact rejection exist, combining PTT with HR holds potential for development of novel wearable sensors that provide exercise assessment largely superior to HR monitors.
机译:心率(HR)是体育锻炼计划中有价值且广泛的衡量指标,尽管它对条件的描述仅限于对运动的心脏反应。运动适应性的更全面测量包括心输出量(Q)(点),中风量(SV)和氧吸收((V)dotO(2)),但是这些生理参数只能使用临床安装的笨重设备来测量设置。在这项工作中,我们探索了脉冲传播时间(PTT)代表与HR有价值的配对的能力,以非侵入方式间接估计点(Q),点SV和(V)dotO(2)。使用便携式传感器将PTT测量为心电图(ECG)R波的峰值与周围(即指尖)的光电容积描记(PPG)波形发作之间的时间间隔。使用线性混合模型,对15名健康的年轻受试者进行了分级递增循环方案,之后将HR和PTT与点(Q),点SV和(V)与点O(2)相关。 PTT的添加在单个级别上显着改善了点上(Q),SV和点V(2)的建模(SV的R-1(2)= 0.419,点上的(Q)的0.548和与仅基于HR的预测模型相比,dotO(2)上的(V)为0.771)(相比之下,SV的R-1(2)= 0.379,点上的(Q)为0.503,而点O(2)的(V)为0.745 )。尽管存在灵敏度和伪像排斥方面的挑战,但将PTT与HR结合使用具有开发新型可穿戴式传感器的潜力,该传感器可提供远远优于HR监视器的运动评估。

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