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Comparison of oscillometry devices using active mechanical test loads

机译:使用主动机械测试载荷的示波器测量装置的比较

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摘要

Noninvasiveness, low cooperation demand and the potential for detailed physiological characterisation have promoted the use of oscillometry in the assessment of lung function. However, concerns have been raised about the comparability of measurement outcomes delivered by the different oscillometry devices. The present study compares the performances of oscillometers in the measurement of mechanical test loads with and without simulated breathing. Six devices (five were commercially available and one was custom made) were tested with mechanical test loads combining resistors (R), gas compliances (C) and a tube inertance (L), to mimic respiratory resistance (Rrs) and reactance (Xrs) spectra encountered in clinical practice. A ventilator was used to simulate breathing at tidal volumes of 300 and 700 mL at frequencies of 30 and 15 min−1, respectively. Measurements were evaluated in terms of R, C, L, resonance frequency (fres), reactance area (AX) and resistance change between 5 and 20 or 19 Hz (R5–20(19)). Increasing test loads caused progressive deviations in Rrs and Xrs from calculated values at various degrees in the different oscillometers. While mean values of Rrs were recovered acceptably, some devices exhibited serious distortions in the frequency dependences of Rrs and Xrs, leading to large errors in C, L, fres, AX and R5–20(19). The results were largely independent of the simulated breathing. Simplistic calibration procedures and mouthpiece corrections, in addition to unknown instrumental and signal processing factors, may be responsible for the large differences in oscillometry measures. Rigorous testing and ongoing harmonisation efforts are necessary to better exploit the diagnostic and scientific potential of oscillometry.
机译:非侵袭性,低合作需求和细节生理特征的潜力促进了在肺功能评估中使用示波器的使用。然而,已经提出了关于不同示波器输送的测量结果的可比性的担忧。本研究比较了示波器在测量机械测试负载中的性能,而没有模拟呼吸。用机械试验载荷组合电阻器(R),气体顺应(L),用机械试验负载测试六个装置(可商购,一个是定制的),用于模拟呼吸阻力(RRS)和电抗(XRS)临床实践中遇到的光谱。用于在30和15 min-1的频率下以300和700ml的潮体积的潮流模拟呼吸器。根据R,C,L,谐振频率(FRES),电抗区域(AX)和电阻变化来评估测量值5到20或19 Hz(R5-20(19))。增加的测试负载导致来自不同示波器中的各个度的RRS和XR的逐渐偏差。虽然可接受的RRS的平均值恢复,但一些器件在RRS和XRS的频率依赖性中表现出严重的扭曲,导致C,L,FRES,AX和R5-20(19)中的大误差。结果在很大程度上独立于模拟呼吸。除了未知的仪器和信号处理因素外,还可以负责示波器测量的巨大差异,简化校准程序和吹嘴校正。需要严格的测试和持续的协调工作,以便更好地利用示波器的诊断和科学潜力。

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