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Advances in Reflective Oxygen Saturation Monitoring With a Novel In-Ear Sensor System: Results of a Human Hypoxia Study

机译:新型入耳式传感器系统监测反射性氧饱和度的研究进展:一项人体低氧研究的结果

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摘要

Pulse oximetry is a well-established, noninvasive photoplethysmographic method to monitor vital signs. It allows us to measure cardiovascular parameters, such as heart rate and arterial oxygen saturation, and is considered an essential monitoring tool in clinical routine. However, since many of the conventional systems work in transmission mode, they can only be applied to the thinner or peripheral parts of the body, such as a finger tip. This has the major disadvantage that, in case of shock-induced centralization and a resulting drop in perfusion, such systems cannot ensure valid measurements. Therefore, we developed a reflective in-ear sensor system that can be worn in the ear channel like a headphone. Because the sensor is integrated in an ear mold and positioned very close to the trunk, reliable measurement is expected even in case of centralization. An additional advantage is that the sensor is comfortable to wear and has considerable resistance to motion artifacts. In this paper, we report on hypoxia studies with ten healthy participants which were performed to analyze the system with regard to the detection of heart rate and arterial oxygen saturation. It was shown earlier that, due to the high signal quality, heart rate can easily be detected. Using the conventional calculation principle, based on Beer–Lambert’s law combined with a single-point calibration method, we now demonstrate that the detection of arterial oxygen saturation in the human ear canal is possible using reflective saturation sensors.
机译:脉搏血氧饱和度测定法是一种完善的,无创的光电容积描记法,用于监测生命体征。它使我们能够测量心血管参数,例如心率和动脉血氧饱和度,被认为是临床常规中必不可少的监测工具。但是,由于许多常规系统以传输模式工作,因此它们只能应用于身体的较薄或外围部分,例如指尖。这样做的主要缺点是,在休克引起的集中和导致灌注下降的情况下,此类系统无法确保有效的测量。因此,我们开发了一种反射式入耳式传感器系统,该系统可以像耳机一样戴在耳道中。由于传感器集成在耳模中,并且位置非常靠近躯干,因此即使在集中的情况下,也有望实现可靠的测量。另一个优点是传感器佩戴舒适并且对运动伪影具有相当大的抵抗力。在本文中,我们报告了与十名健康参与者进行的缺氧研究,这些研究旨在分析系统有关心率和动脉血氧饱和度的检测。前面已经表明,由于信号质量高,因此可以轻松检测到心率。现在,使用基于比尔-兰伯特定律的常规计算原理以及单点校准方法,我们证明了使用反射饱和度传感器可以检测人耳道中的动脉血氧饱和度。

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