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SpO2 and heart rate measurement with wearable watch based on PPG

机译:基于PPG的可穿戴手表进行SpO2和心率测量

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This paper is based on the Photoplethysmography technology to measure the arterial blood oxygen saturation (SpO2) and Heart rate which are people's vital sign. In the system we design a non-invasive continuous and portable wearable watch to measure human SpO2 and Heart rate. The wearable watch uses the micro-optoelectronic sensors to get PPG signal and utilizes wireless Bluetooth 4.0 to communicate with PC or mobile phone. The principle of Photoplethysmography is that reflection or transmission light changes with blood volume in the microvascular of tissue. So the PPG signal contains much valuable information about cardiovascular system such as SpO2, heart rate, blood pressure, and respiratory rate. The most advantages of PPG is non-invasive and low-cost, however the transmitting and receiving channel of PPG is easily disturbed by outside light and motion. In this Paper, to minimize the PPG channel noise and motion artifacts, we build the PPG signal channel model and use sensor to measure the outside light to cancel the distance disturbance between micro-optoelectronic sensors and skin. Because of the motion noises falls within the same frequency band as the physiological signal, we use MEMS approach to measure the motion information and cancel the disturbance. Disease about cardiovascular will be monitored and predicted in future work.
机译:本文基于光电容积描记技术,测量了人们的生命体征,即动脉血氧饱和度(SpO2)和心率。在该系统中,我们设计了一种非侵入性连续便携式便携式手表,用于测量人的血氧饱和度和心率。这款可穿戴手表使用微光电传感器获取PPG信号,并利用无线蓝牙4.0与PC或手机进行通信。光体积描记术的原理是反射或透射光随组织微血管中的血容量而变化。因此,PPG信号包含许多有关心血管系统的有价值的信息,例如SpO2,心率,血压和呼吸频率。 PPG的最大优点是无创且低成本,但是PPG的发送和接收通道很容易受到外界光线和运动的干扰。在本文中,为了最小化PPG通道的噪声和运动伪影,我们建立了PPG信号通道模型,并使用传感器测量外部光,以消除微光电传感器与皮肤之间的距离干扰。由于运动噪声属于与生理信号相同的频带,因此我们使用MEMS方法测量运动信息并消除干扰。有关心血管的疾病将在以后的工作中进行监控和预测。

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