Neonatal Research, Murdoch Childrens Research Institute, Parkville, Victoria, Australia.
Swisstom AG, Landquart, Switzerland.
Pediatr Res. 2017 Oct;82(4):712-720. doi: 10.1038/pr.2017.141. Epub 2017 Jul 12.
BackgroundCurrent sustained lung inflation (SI) approaches use uniform pressures and durations. We hypothesized that gestational-age-related mechanical and developmental differences would affect the time required to achieve optimal lung aeration, and resultant lung volumes, during SI delivery at birth in lambs.Methods49 lambs, in five cohorts between 118 and 139 days of gestation (term 142 d), received a standardized 40 cmHO SI, which was delivered until 10 s after lung volume stability (optimal aeration) was visualized on real-time electrical impedance tomography (EIT), or to a maximum duration of 180 s. Time to stable lung aeration (T) within the whole lung, gravity-dependent, and non-gravity-dependent regions, was determined from EIT recordings.ResultsT was inversely related to gestation (P<0.0001, Kruskal-Wallis test), with the median (range) being 229 (85,306) s and 72 (50,162) s in the 118-d and 139-d cohorts, respectively. Lung volume at T increased with gestation from a mean (SD) of 20 (17) ml/kg at 118 d to 56 (13) ml/kg at 139 d (P=0.002, one-way ANOVA). There were no gravity-dependent regional differences in T or aeration.ConclusionsThe trajectory of aeration during an SI at birth is influenced by gestational age in lambs. An understanding of this may assist in developing SI protocols that optimize lung aeration for all infants.
目前的持续肺膨胀(SI)方法使用均匀的压力和持续时间。我们假设与胎龄相关的机械和发育差异会影响在出生时通过 SI 输送时达到最佳肺充气所需的时间,以及由此产生的肺容量,在羊水中。
49 只羊,在 118 至 139 天的五个队列中(足月 142 天),接受了标准化的 40 cmHO SI,直到实时电阻抗断层扫描(EIT)上观察到肺容量稳定(最佳充气)后 10 秒,或者达到最大持续时间 180 秒。通过 EIT 记录确定整个肺、重力依赖和非重力依赖区域的稳定肺充气时间(T)。
T 与胎龄呈反比(P<0.0001,Kruskal-Wallis 检验),118 天和 139 天组的中位数(范围)分别为 229(85,306)秒和 72(50,162)秒。T 时的肺容量随着胎龄的增加而增加,从 118 天的平均(SD)20(17)ml/kg 增加到 139 天的 56(13)ml/kg(P=0.002,单因素方差分析)。T 或充气在重力依赖的区域没有差异。
在出生时通过 SI 进行充气的轨迹受到羊水中胎龄的影响。了解这一点可能有助于制定优化所有婴儿肺充气的 SI 协议。