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Comparison of a micro-electro-mechanical system airflow sensor with the pneumotach in the forced oscillation technique

机译:微机电系统气流传感器与气动在强制振荡技术中的比较

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Purpose: This study supports the use of thin-film micro-electro-mechanical system (MEMS) airflow sensors in the forced oscillation technique. Materials and methods: The study employed static testing using air flow standards and computer-controlled sound attenuations at 8 Hz. Human feasibility studies were conducted with a testing apparatus consisting of a pneumotach and thin-film MEMS air flow sensors in series. Short-time Fourier transform spectra were obtained using SIGVIEW software. Results: Three tests were performed, and excellent correlations were observed between the probes. The thin-film MEMS probe showed superior sensitivity to higher frequencies up to 200 Hz. Conclusion: The results suggest that lower-cost thin-film MEMS can be used for forced oscillation technique applications (including home care devices) that will benefit patients suffering from pulmonary diseases such as asthma, COPD, and cystic fibrosis.
机译:目的:本研究支持在强制振荡技术中使用薄膜微机电系统(MEMS)气流传感器。材料和方法:该研究采用了空气流动标准和8 Hz的计算机控制声音衰减的静态测试。人类的可行性研究是通过一个由气动和薄膜MEMS空气流量传感器串联组成的测试设备进行的。使用SIGVIEW软件获得了短时傅立叶变换光谱。结果:进行了三个测试,并且在探针之间观察到极好的相关性。薄膜MEMS探头对高达200 Hz的更高频率显示出优异的灵敏度。结论:结果表明,低成本薄膜MEMS可用于强制振荡技术应用(包括家庭护理设备),这将使患有哮喘,COPD和囊性纤维化等肺部疾病的患者受益。

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