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Variability in time delay between two models of pulse oximeters for deriving the photoplethysmographic signals

机译:两种用于导出光电容积描记图信号的脉搏血氧仪模型之间的时间延迟差异

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Pulse oximetry is commonly used as an arterial blood oxygen saturation (SaO(2)) measure. However, its other serial output, the photoplethysmography (PPG) signal, is not as well studied. Raw PPG signals can be used to estimate cardiovascular measures like pulse transit time (PTT) and possibly heart rate (HR). These timing-related measurements are heavily dependent on the minimal variability in phase delay of the PPG signals. Masimo SET (R) Rad-9 (TM) and Novametrix Oxypleth oximeters were investigated for their PPG phase characteristics on nine healthy adults. To facilitate comparison, PPG signals were acquired from fingers on the same hand in a random fashion. Results showed that mean PTT variations acquired from the Masimo oximeter (37.89 ms) were much greater than the Novametrix (5.66 ms). Documented evidence suggests that I ms variation in PTT is equivalent to I mmHg change in blood pressure. Moreover, the PTT trend derived from the Masimo oximeter can be mistaken as obstructive sleep apnoeas based on the known criteria. HR comparison was evaluated against estimates attained from an electrocardiogram (ECG). Novametrix differed from ECG by 0.71 +/- 0.58% (p < 0.05) while Masimo differed by 4.51 +/- 3.66% (p > 0.05). Modem oximeters can be attractive for their improved SaO(2) measurement. However, using raw PPG signals obtained directly from these oximeters for timing-related measurements warrants further investigations.
机译:脉搏血氧饱和度通常用作动脉血氧饱和度(SaO(2))量度。但是,尚未对其其他串行输出光体积描记术(PPG)信号进行研究。 PPG原始信号可用于估算心血管指标,例如脉搏传播时间(PTT)以及可能的心率(HR)。这些与时序相关的测量在很大程度上取决于PPG信号相位延迟的最小变化。研究了Masimo SET(R)Rad-9(TM)和Novametrix血氧饱和度计在9位健康成年人身上的PPG相特征。为了便于比较,从同一只手的手指以随机方式获取了PPG信号。结果表明,从Masimo血氧仪获得的平均PTT变化(37.89毫秒)比Novametrix(5.66毫秒)大得多。有据可查的证据表明,PTS中I ms的变化等于血压中I mmHg的变化。而且,根据已知标准,源自Masimo血氧仪的PTT趋势可被误认为阻塞性睡眠呼吸暂停。根据心电图(ECG)得出的估计值评估HR比较。 Novametrix与ECG的差异为0.71 +/- 0.58%(p <0.05),而Masimo的差异为4.51 +/- 3.66%(p> 0.05)。现代血氧仪可因其改进的SaO(2)测量而具有吸引力。但是,将直接从这些血氧仪获得的原始PPG信号用于与时序相关的测量值得进一步研究。

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