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Bedding waveguide for smartphone-based ballistocardiography

机译:用于基于智能手机的心动描记术的寝具波导

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Ballistocardiography (BCG), a contactless heart rate monitoring method, has the potential to measure vital signs and reduce neonates’ monitoring pain and discomfort. It uses an accelerometer on the mattress side. However, the bedding and bed frame nature may alter the propagation of the ejection force to the sensor, especially in case of viscous foam or damping medical beds. As neonates have a weaker ejection force than adults, heartbeats are sometimes undetectable with usual BCG systems.The contribution of the bedding nature to the BCG amplitude is investigated and a waveguide bedding is designed to amplify the BCG signal: a healthy adult volunteer is asked to rest in supine position on a bed. A contactless accelerometer records the BCG for one minute on the bed surface, twenty centimeters away from the thorax. Amplitude of heartbeats are compared for different waveguide beddings, with or without a mattress cover. Another experimentation applies this principle with a smartphone that includes an accelerometer without any hardware amplification, in comparison with a usual BCG system. The selected waveguides beddings significantly amplify up to 50 % the smallest heartbeats in the BCG signal. The smartphone BCG was also amplified with the waveguide bedding and heartbeats could be detected.The choice of bedding and bed frame must be considered for BCG measurement systems. Waveguides beddings amplify the ejection force generated during systole and offer opportunities to develop a smartphone-based contactless monitoring method for the mechanical cardiac activity of neonates.
机译:心脏冲击描记法(BCG)是一种非接触式心率监测方法,具有测量生命体征并减少新生儿监测疼痛和不适感的潜力。它在床垫侧使用加速度计。但是,床上用品和床架的性质可能会改变喷射力向传感器的传播,特别是在粘性泡沫或阻尼医疗床的情况下。由于新生儿的弹射力较成人弱,因此通常的BCG系统有时无法检测到心跳。研究了床上用品性质对BCG振幅的影响,并设计了波导床上用品来放大BCG信号:请一名健康的成年人志愿者仰卧在床上休息。非接触式加速度计将BCG在距胸腔20厘米的床面上记录一分钟。比较了有无床垫套的不同波导床上用品的心跳幅度。与普通的BCG系统相比,另一项实验将这种原理应用于包括加速度计且没有任何硬件放大功能的智能手机。选定的波导被褥会显着放大BCG信号中最小心跳的50%。智能手机的BCG也可以通过波导被褥放大,并可以检测到心跳.BCG测量系统必须考虑对被褥和床架的选择。波导被褥会放大收缩期产生的弹射力,并为开发基于智能手机的非接触式监测新生儿机械心脏活动的方法提供了机会。

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