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A wrist worn SpO2 monitor with custom finger probe for motion artifact removal

机译:腕戴式SpO2监护仪,带有定制手指探头,可去除运动伪影

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Continuous monitoring of blood oxygen saturation (SpO2) level and heart rate is critical in surgery, ICUs and patients suffering from Chronic Obstructive Pulmonary Diseases. Pulse oximeters which compute SpO2 using transmittance photoplethysmography (PPG), is widely accepted for continuous monitoring. Presence of motion artifacts in PPG signals is a major obstacle in the extraction of reliable cardiovascular parameters, in real time and continuous monitoring applications. In this paper, a wrist worn device with a custom finger probe with an integrated accelerometer to remove motion artifacts is presented. An algorithm which can run on low power systems with processing constraints is implemented on the device. The device does continuous acquisition of PPG and accelerometer waveforms and computes SpO2 using the proposed light weight algorithm. The measurement results are continuously synced with an Android tablet, which acts as a gateway and is pushed on to the cloud for further analysis. The accuracy in SpO2 measured by the device was validated using Fluke ProSim 8 SpO2 simulator and the efficiency in accurately computing SpO2 in the presence of motion was validated over 40 healthy volunteers in a controlled setting.
机译:在手术,重症监护病房和患有慢性阻塞性肺疾病的患者中,连续监测血氧饱和度(SpO2)水平和心率至关重要。使用透射光体积描记法(PPG)计算SpO2的脉搏血氧仪已被广泛用于连续监测。在实时和连续监测应用中,PPG信号中运动伪影的存在是提取可靠的心血管参数的主要障碍。在本文中,提出了一种带有定制手指探针的腕戴式设备,该手指探针带有集成的加速度计以消除运动伪影。在设备上实现了可以在具有处理约束的低功率系统上运行的算法。该设备可以连续采集PPG和加速度计波形,并使用建议的轻量级算法计算SpO2。测量结果与作为网关的Android平板电脑持续同步,并被推送到云中以进行进一步的分析。使用Fluke ProSim 8 SpO2模拟器验证了设备测量的SpO2的准确性,并在受控环境下验证了40多名健康志愿者在运动时准确计算SpO2的效率。

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