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振荡压力和流量之间的时间延迟会影响强迫振荡技术的准确性。

Time lag between oscillatory pressure and flow affecting accuracy of forced oscillation technique.

机构信息

Department of Occupational Health, Tohoku University Graduate School of Medicine, Sendai 980, Japan.

出版信息

Biomed Eng Online. 2011 Jul 29;10:65. doi: 10.1186/1475-925X-10-65.

Abstract

BACKGROUND

The forced oscillation technique (FOT) is a simple method for assessing the oscillatory mechanics of the respiratory system. The oscillatory properties, respiratory system resistance (Rrs) and reactance (Xrs), are calculated from the oscillatory pressure/flow relationship. Although the FOT has been a well-established technique, some detailed experimental conditions would be different among institutions.

METHODS

We evaluated whether time lags produced by the experimental conditions such as different positions of the sensors can affect the accuracy of the FOT. If the position of the pressure sensor is different from the flow sensor, a time lag may occur in the measurements. The effect of the time lag was studied by numerical analysis.

RESULTS

Rrs was estimated to be increased and Xrs decreased with an increase in the time lag, especially at a high oscillatory frequency of the medium-frequency range (5-35 Hz). At the high-frequency range (10-500 Hz), Rrs and Xrs were strikingly different in the values of the time lag.

CONCLUSION

A time lag between the oscillatory pressure and flow may be involved in the accuracy of the FOT, suggesting that it needs to be minimized or compensated for with signal processing. Researchers should pay attention to such detailed experimental conditions of the FOT apparatus.

摘要

背景

呼吸强迫震荡技术(FOT)是一种评估呼吸系统震荡力学的简单方法。通过震荡压力/流量关系来计算震荡特性,呼吸系统阻力(Rrs)和电抗(Xrs)。虽然 FOT 已经是一种成熟的技术,但不同机构之间的一些详细实验条件可能会有所不同。

方法

我们评估了实验条件(如传感器的不同位置)产生的时间滞后是否会影响 FOT 的准确性。如果压力传感器的位置与流量传感器不同,则测量中可能会出现时间滞后。通过数值分析研究了时间滞后的影响。

结果

随着时间滞后的增加,Rrs 估计会增加,Xrs 会减少,尤其是在中频范围(5-35 Hz)的高震荡频率下。在高频范围(10-500 Hz),Rrs 和 Xrs 的时间滞后值差异很大。

结论

在 FOT 的准确性中,震荡压力和流量之间可能存在时间滞后,因此需要通过信号处理来最小化或补偿。研究人员应该注意 FOT 仪器的这些详细实验条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d701/3166920/64d32decbddc/1475-925X-10-65-1.jpg

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