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A passive quantitative measurement of airway resistance using depth data

机译:使用深度数据进行气道阻力的被动定量测量

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The Respiratory Syncytial Virus (RSV) is the most common cause of serious lower respiratory tract infections in infants and young children. RSV often causes increased airway resistance, clinically detected as wheezing by chest auscultation. In this disease, expiratory flows are significantly reduced due to the high resistance in patient's airway passages. A quantitative method for measuring resistance can have a great benefit to diagnosis and management of children with RSV infections as well as with other lung diseases. Airway resistance is defined as the lung pressure divided by the airflow. In this paper, we propose a method to quantify resistance through a simple, non-contact measurement of chest volume that can act as a surrogate measure of the lung pressure and volumetric airflow. We used depth data collected by a Microsoft Kinect camera for the measurement of the lung volume over time. In our experimentation, breathing through a number of plastic straws induced different airway resistances. For a standard spirometry test, our volume/flow estimation using Kinect showed strong correlation with the flow data collected by a commercially-available spirometer (five subjects, each performing 20 breathing trials, correlation coefficient = 0.88, with 95% confidence interval). As the number of straws decreased, emulating a higher airway obstruction, our algorithm was sufficient to distinguish between several levels of airway resistance.
机译:呼吸道合胞病毒(RSV)是婴幼儿严重下呼吸道感染的最常见原因。 RSV经常引起气道阻力增加,临床上通过胸部听诊可发现其喘息。在这种疾病中,由于患者气道中的高阻力,使呼气流量显着减少。定量测量抗药性的方法可以极大地帮助RSV感染以及其他肺部疾病的儿童的诊断和管理。气道阻力定义为肺压力除以气流。在本文中,我们提出了一种通过简单,非接触式测量胸部体积来量化阻力的方法,该方法可作为肺压和体积气流的替代量度。我们使用Microsoft Kinect相机收集的深度数据来测量随时间变化的肺部容积。在我们的实验中,通过许多塑料吸管呼吸会引起不同的气道阻力。对于标准的肺活量测试,我们使用Kinect进行的体积/流量估算显示出与商用肺活量计收集的流量数据密切相关(五个受试者,每个受试者进行20次呼吸试验,相关系数= 0.88,置信区间为95%)。随着吸管数量的减少(模拟更高的气道阻塞),我们的算法足以区分气道阻力的几个级别。

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