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Physiological Validation of an Airborne Ultrasound Based Surface Motion Camera for a Contactless Characterization of Breathing Pattern in Humans

机译:基于机载超声的表面运动相机对人体呼吸模式进行非接触式表征的生理验证

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摘要

Characterizing the breathing pattern in naturally breathing humans brings important information on respiratory mechanics, respiratory muscle, and breathing control. However, measuring breathing modifies breathing (observer effect) through the effects of instrumentation and awareness: measuring human breathing under true ecological conditions is currently impossible. This study tested the hypothesis that non-contact vibrometry using airborne ultrasound (SONAR) could measure breathing movements in a contactless and invisible manner. Thus, first, we evaluated the validity of SONAR measurements by testing their interchangeability with pneumotachograph (PNT) measurements obtained at the same time. We also aimed at evaluating the observer effect by comparing breathing variability obtained by SONAR versus SONAR-PNT measurements. Twenty-three healthy subjects (12 men and 11 women; mean age 33 years – range: 20–54) were studied during resting breathing while sitting on a chair. Breathing activity was described in terms of ventilatory flow measured using a PNT and, either simultaneously or sequentially, with a SONAR device measuring the velocity of the surface motion of the chest wall. SONAR was focused either anteriorly on the xiphoid process or posteriorly on the lower part of the costal margin. Discrete ventilatory temporal and volume variables and their coefficients of variability were calculated from the flow signal (PNT) and the velocity signal (SONAR) and tested for interchangeability (Passing-Bablok regression). Tidal volume (VT) and displacement were linearly related. Breathing frequency (BF), total cycle time (TT), inspiratory time (TI), and expiratory time (TE) met interchangeability criteria. Their coefficients of variation were not statistically significantly different with PNT and SONAR-only. This was true for both the anterior and the posterior SONAR measurements. Non-contact vibrometry using airborne ultrasound is a valid tool for measuring resting breathing pattern.
机译:表征自然呼吸的人类的呼吸模式会带来有关呼吸力学,呼吸肌和呼吸控制的重要信息。但是,测量呼吸会通过仪器和意识的作用来改变呼吸(观察者的效果):目前无法在真实的生态条件下测量人的呼吸。这项研究检验了以下假设:使用机载超声(SONAR)进行非接触式振动测量可以以非接触和不可见的方式测量呼吸运动。因此,首先,我们通过与同时获得的气动速度描记器(PNT)测量值测试SONAR测量值的互换性来评估其有效性。我们还旨在通过比较SONAR与SONAR-PNT测量获得的呼吸变异性来评估观察者效果。对二十三名健康受试者(12名男性和11名女性;平均年龄33岁–范围:20–54)进行了研究,他们坐在椅子上休息呼吸。呼吸活动用呼吸机流量来描述,呼吸机流量是使用PNT以及同时或顺序使用SONAR设备测量的胸壁表面运动速度测量的。 SONAR既往前集中在剑突突或后方集中在肋缘的下部。从流量信号(PNT)和速度信号(SONAR)计算出离散的通气时间和体积变量及其变异系数,并测试互换性(Passing-Bablok回归)。潮气量(VT)和位移呈线性关系。呼吸频率(BF),总循环时间(TT),吸气时间(TI)和呼气时间(TE)符合互换性标准。仅使用PNT和SONAR,它们的变异系数在统计学上没有显着差异。前后声纳测量均是如此。使用机载超声的非接触式振动测量法是测量静止呼吸模式的有效工具。

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