Dipartimento di Elettronica, Informazione e Bioingegneria, Politecnico di Milano University, Milan, Italy.
Department of Neonatology, University Children's Hospital Basel UKBB, University of Basel, Basel, Switzerland.
Pediatr Res. 2019 Sep;86(3):382-388. doi: 10.1038/s41390-019-0432-6. Epub 2019 May 20.
We aimed at investigating whether early lung mechanics in non-intubated infants below 32 weeks of gestational age (GA) are associated with respiratory outcome.
Lung mechanics were assessed by the forced oscillation technique using a mechanical ventilator (Fabian HFOi, ACUTRONIC Medical Systems AG, Hirzel, Switzerland) that superimposed small-amplitude oscillations (10 Hz) on a continuous positive airway pressure. Measurements were performed during regular tidal breathing using a face mask on days 2, 4, and 7 of life. Respiratory system resistance (Rrs) and reactance (Xrs) were computed from flow and pressure.
One hundred and seventy-seven measurements were successfully performed in 68 infants. Infants had a mean (range) GA of 29.3 (24.1-31.7) weeks and a birth weight of 1257 (670-2350)g. Xrs was associated with the duration of respiratory support (R = 0.39, p < 0.001). A multilevel regression model, including Xrs and GA, explained the duration of respiratory support better than GA alone (R = 0.51 vs. 0.45, p = 0.005, likelihood ratio test).
Assessment of Xrs in the first week of life is feasible and improves prognostication of respiratory outcome in very preterm infants on noninvasive respiratory support.
我们旨在研究非插管的 32 周以下早产儿的早期肺部力学是否与呼吸结局相关。
使用机械通气机(Fabian HFOi,ACUTRONIC Medical Systems AG,Hirzel,瑞士)通过强迫震荡技术评估肺部力学,该通气机在持续气道正压上叠加小振幅震荡(10Hz)。在生命的第 2、4 和 7 天,使用面罩在常规潮式呼吸下进行测量。从流量和压力中计算呼吸系统阻力(Rrs)和电抗(Xrs)。
在 68 名婴儿中成功完成了 177 次测量。婴儿的平均(范围)胎龄为 29.3(24.1-31.7)周,出生体重为 1257(670-2350)g。Xrs 与呼吸支持的持续时间相关(R=0.39,p<0.001)。包括 Xrs 和 GA 的多水平回归模型比仅 GA 能更好地解释呼吸支持的持续时间(R=0.51 比 0.45,p=0.005,似然比检验)。
在生命的第一周评估 Xrs 是可行的,并且可以改善对接受无创呼吸支持的极早产儿呼吸结局的预测。