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Ultrasound Sensors for Diaphragm Motion Tracking: An Application in Non-Invasive Respiratory Monitoring

机译:膜片运动跟踪的超声波传感器:在无创呼吸监测中的应用

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摘要

This paper introduces a novel respiratory detection system based on diaphragm wall motion tracking using an embedded ultrasound sensory system. We assess the utility and accuracy of this method in evaluating the function of the diaphragm and its contribution to respiratory workload. The developed system is able to monitor the diaphragm wall activity when the sensor is placed in the zone of apposition (ZOA). This system allows for direct measurements with only one ultrasound PZT5 piezo transducer. The system generates pulsed ultrasound waves at 2.2 MHz and amplifies reflected echoes. An added benefit of this system is that due to its design, the respiratory signal is less subject to motion artefacts. Promising results were obtained from six subjects performing six tests per subject with an average respiration detection sensitivity and specificity of 84% and 93%, respectively. Measurements were compared to a gold standard commercial spirometer. In this study, we also compared our measurements to other conventional methods such as inertial and photoplethysmography (PPG) sensors.
机译:本文介绍了一种基于嵌入式超声传感系统的基于隔膜壁运动跟踪的新型呼吸检测系统。我们评估该方法在评估隔膜功能及其对呼吸工作量的贡献方面的实用性和准确性。当传感器放置在并置区(ZOA)中时,开发的系统能够监视隔膜壁的活动。该系统仅允许使用一个超声波PZT5压电传感器进行直接测量。该系统产生2.2 MHz的脉冲超声波,并放大反射回波。该系统的另一个好处是,由于其设计,呼吸信号较少受到运动伪影的影响。从六名受试者中获得有希望的结果,每名受试者进行六项测试,平均呼吸检测灵敏度和特异性分别为84%和93%。将测量结果与金标准商业肺活量计进行比较。在这项研究中,我们还将测量值与惯性和光电容积描记(PPG)传感器等其他常规方法进行了比较。

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