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Investigation of photoplethysmography and arterial blood oxygen saturation from the ear-canal and the finger under conditions of artificially induced hypothermia

机译:在人工低温条件下耳腔和手指的光体积描记法和动脉血氧饱和度的研究

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摘要

Pulse oximeters relay on the technique of photoplethysmography (PPG) to estimate arterial oxygen saturation (SpO2). In conditions of poor peripheral perfusion such as hypotension, hypothermia, and vasoconstriction, pulse oximeters become inaccurate or provide no reading. This is due to the poor quality of the PPG signals detected at that instance. In order to overcome this problem, the ear canal has been proposed as a alternative measurement site for measuring reliable SpO2. Hence, an ear canal PPG sensor was developed along with a PPG processing system. The performance of the sensor was evaluated by measuring the red and infrared PPGs and SpO2 from 10 healthy volunteers undergoing artificially induced hypothermia. The results from the ear canal sensor were compared with simultaneously acquired results from the finger. Hypothermia was induced by exposing the volunteers to cold temperatures of 10 ± 1°C. The results acquired suggest that the ear canal pulse oximeter endures more in estimating SpO2 values accurately when compared with the more common finger pulse oximeter.
机译:脉搏血氧仪依靠光体积描记法(PPG)来估计动脉血氧饱和度(SpO2)。在周围灌注不良的情况下,如低血压,体温过低和血管收缩,脉搏血氧饱和度计变得不准确或无法提供读数。这是由于在该情况下检测到的PPG信号质量较差。为了克服该问题,已提出耳道作为用于测量可靠的SpO 2的替代测量部位。因此,开发了耳道PPG传感器以及PPG处理系统。传感器的性能通过测量10位接受人工低温治疗的健康志愿者的红色和红外PPG和SpO2进行评估。将耳道传感器的结果与手指同时获得的结果进行比较。通过将志愿者暴露在10±1°C的低温下来诱发体温过低。获得的结果表明,与更常见的手指脉搏血氧仪相比,耳道脉搏血氧仪可更准确地估计SpO2值。

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