文丘里效应
肺活量计
呼气
气流
材料科学
声学
流量测量
管(容器)
压力降
肺活量测定
生物医学工程
机械工程
医学
麻醉
机械
工程类
入口
复合材料
哮喘
物理
呼出气一氧化氮
内科学
作者
Laura L. Becerra,Tarek Rafeedi,Sankaran Ramanarayanan,Ian Frankel,Juliana Miller,Alexander X. Chen,Yi Qie,Darren J. Lipomi,Harinath Garudadri,Tse Nga Ng
标识
DOI:10.1002/admt.202300627
摘要
Abstract In this work, a portable venturi tube capable of measuring bidirectional respiratory flow is developed and correlated the measurements to pulmonary function. Pressure signals are transduced using flexible and compressible capacitive foam sensors embedded into the wall of the device. In this configuration, the sensors are able to provide differential pressure readings, from which the airflow rate passing through the tube could be extrapolated. Utilizing the venturi effect, the geometry of the spirometer tube is designed through finite element analysis to measure respiratory airflow during inhalation and exhalation. The device tube is 3D‐printed and used to measure tidal breathing and deep breathing, along with peak expiratory flow rates, on a healthy individual. This spirometer design allows for easy‐to‐use point‐of‐care diagnoses and has the potential to improve the care of respiratory illnesses.
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