Boston University, Boston, MA, USA.
Ann Biomed Eng. 2012 Apr;40(4):925-33. doi: 10.1007/s10439-011-0470-7. Epub 2011 Nov 30.
The forced oscillation technique (FOT) is a non-invasive technique to monitor airway obstruction in those with asthma. The aim of this study was to design and validate a system to use FOT during sleep, both with and without bi-level positive airway pressure (BPAP), and to separate upper airway resistance from lower. 8 Hz pressure oscillations were supplied, over which the subject breathed, pressure and flow measurements were then used to calculate impedance. A phase-shift induced by the pressure transducer tubing was characterized, and FOT resistance was compared to steady flow resistance both with and without BPAP. A Millar catheter was used to measure pressure at the epiglottis, allowing the separation of upper from lower airway resistance. A phase shift of -0.010 s was calculated for the pressure transducer tubing, and the average error between FOT and steady flow resistance was -0.2 ± 0.2 cmH₂O/L/s without BPAP and 0.4 ± 0.2 cmH₂O/L/s with BPAP. The system was tested on three subjects, one healthy, one with obstructive sleep apnea, and one with asthma. The FOT was well tolerated and resistance was separated into upper and lower airway components. This setup is suitable for monitoring both upper and lower airway obstruction during sleep in those with and without asthma.
强迫振荡技术(FOT)是一种监测哮喘患者气道阻塞的非侵入性技术。本研究旨在设计并验证一种在睡眠期间使用 FOT 的系统,包括使用和不使用双水平气道正压通气(BPAP)的情况,并将上气道阻力与下气道阻力分开。以 8Hz 的压力振荡供气,患者在呼吸时进行压力和流量测量,然后用于计算阻抗。对压力换能器管引起的相移进行了特征描述,并比较了 FOT 阻力与有和无 BPAP 时的稳态流量阻力。使用 Millar 导管测量会厌处的压力,从而将上气道阻力与下气道阻力分开。计算出压力换能器管的相移为-0.010s,在无 BPAP 时,FOT 和稳态流量阻力之间的平均误差为-0.2±0.2cmH₂O/L/s,而有 BPAP 时为 0.4±0.2cmH₂O/L/s。该系统在三名受试者(一名健康人、一名阻塞性睡眠呼吸暂停患者和一名哮喘患者)上进行了测试。FOT 耐受性良好,阻力分为上气道和下气道两部分。该装置适用于监测有和无哮喘患者睡眠期间的上气道和下气道阻塞。