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A Wireless Respiratory Monitoring System Using a Wearable Patch Sensor Network

机译:使用可佩戴贴片传感器网络的无线呼吸监测系统

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Wireless body sensors are increasingly used by clinicians and researchers in a wide range of applications, such as sports, space engineering, and medicine. Monitoring vital signs in real time can dramatically increase diagnosis accuracy and enable automatic curing procedures, e.g., detect and stop epilepsy or narcolepsy seizures. Breathing parameters are critical in oxygen therapy, hospital, and ambulatory monitoring, while the assessment of cough severity is essential when dealing with several diseases, such as chronic obstructive pulmonary disease. In this paper, a low-power wireless respiratory monitoring system with cough detection is proposed to measure the breathing rate and the frequency of coughing. This system uses wearable wireless multimodal patch sensors, designed using off-the-shelf components. These wearable sensors use a low-power nine-axis inertial measurement unit to quantify the respiratory movement and a MEMs microphone to record audio signals. Data processing and fusion algorithms are used to calculate the respiratory frequency and the coughing events. The architecture of each wireless patch-sensor is presented. In fact, the results show that the small 26.67 x 65.53 mm(2) patch-sensor consumes around 12-16.2 mA and can last at least 6 h with a miniature 100-mA lithium ion battery. The data processing algorithms, the acquisition, and wireless communication units are described. The proposed network performance is presented for experimental tests with a freely behaving user in parallel with the gold standard respiratory inductance plethysmography.
机译:临床医生和研究人员越来越多地使用无线体系传感器,例如运动,空间工程和医学等各种应用。实时监测生命体征可以显着提高诊断精度,使自动固化程序能够,例如,检测和停止癫痫或鼻腔癫痫发作。呼吸参数对于氧气疗法,医院和动态监测至关重要,而在处理几种疾病(如慢性阻塞性肺病)时,对咳嗽严重程度的评估至关重要。本文提出了一种具有咳嗽检测的低功耗无线呼吸监测系统,以测量呼吸速率和咳嗽频率。该系统使用可穿戴无线多模码贴片传感器,使用现成的组件设计。这些可穿戴传感器使用低功耗九轴惯性测量单元来量化呼吸运动和MEMS麦克风来记录音频信号。数据处理和融合算法用于计算呼吸频率和咳嗽事件。提出了每个无线修补传感器的架构。事实上,结果表明,小26.67 x 65.53 mm(2)贴片传感器消耗大约12-16.2 mA,并且可以持续至少6小时,具有微型100-mA锂离子电池。描述数据处理算法,获取和无线通信单元。提出了网络性能,用于实验测试,并与黄金标准呼吸道电感体积平行于自由行为用户。

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