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Body Sensor Network for Mobile Health Monitoring, a Diagnosis and Anticipating System

机译:用于移动健康监测的身体传感器网络,诊断和预期系统

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摘要

A system capable of mobile heath monitoring was designed and implemented from the first principles. The system is capable of measuring vital physiological parameters, interpret the measured signals, and provide a sense of monitoring and biofeedback to the user. In the case, a medical emergency is detected notifications are sent to a medical team for the analysis. The system was designed through the investigation of various biosignal extraction methods. An optical pulse oximeter sensor was designed along with the required software algorithms. The photoplethysmographic signals were extracted and used to calculate heart rate, saturation of oxygen, and pulse transits time. The pulse transit time was utilized in the estimation of continuous blood pressure measurement. The pulse oximetry implementation applies reflectance-based sensing on the user’s fingertip and palm. Skin temperature is also measurable through the use of a digital temperature sensor. The system is capable of providing feedback to the user by means of a smartphone application receiving data from the device through Bluetooth. The measurement of the proposed physiological parameters were successfully measured with the appropriate degree of accuracy required by medical standards. The system is capable of health monitoring through accurate measurements, providing the user with feedback and successfully identifying medical stress resulting in the sending of a notification to a medical doctor.
机译:从最初的原理开始,设计并实施了一种能够移动健康监测的系统。该系统能够测量重要的生理参数,解释测量的信号并向用户提供监视和生物反馈的感觉。在这种情况下,检测到紧急医疗情况的通知将发送到医疗团队进行分析。该系统是通过研究各种生物信号提取方法而设计的。设计了光学脉搏血氧仪传感器以及所需的软件算法。提取了光电容积描记信号,并将其用于计算心率,氧饱和度和脉搏传播时间。脉搏传播时间用于连续血压测量的估计中。脉搏血氧饱和度检测的实现是在用户的指尖和手掌上应用基于反射率的传感。也可以通过使用数字温度传感器来测量皮肤温度。该系统能够通过智能手机应用程序通过蓝牙从设备接收数据的方式向用户提供反馈。所建议的生理参数的测量已成功按照医学标准要求的适当准确度进行了测量。该系统能够通过精确的测量进行健康监控,为用户提供反馈并成功识别医疗压力,从而将通知发送给医生。

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