Increase in Newborns Ventilated Within the First Minute of Life and Reduced Mortality After Clinical Data-Guided Simulation Training

临床数据指导的模拟训练可提高新生儿出生后第一分钟内接受呼吸机治疗的比例,并降低死亡率。

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Abstract

INTRODUCTION: Birth asphyxia-related deaths is a major global concern. Rapid initiation of ventilation within the "Golden Minute" is important for intact survival but reported to be challenging, especially in low-/middle-income countries. Helping Babies Breathe (HBB) is a simulation-based training program for newborn resuscitation. The aim of this HBB quality improvement (QI) intervention was to decrease time from birth to ventilation and document potential changes in perinatal outcomes. METHOD: Prospective observational QI study in a rural Tanzanian hospital, October 1, 2017, to August 31, 2021, first-year baseline, second-year QI/simulation intervention, and 2-year postintervention. Trained research assistants observed wide-ranging information from all births (N = 12,938). The intervention included monthly targeted HBB simulation training addressing documented gaps in clinical care, clinical debriefings, and feedback meetings. RESULTS: During the QI/simulation intervention, 68.5% nonbreathing newborns were ventilated within 60 seconds after birth compared with 15.8% during baseline and 42.2% and 28.9% during the 2 postintervention years ( P < 0.001). Time to first ventilation decreased from median 101 (quartiles 72-150) to 55 (45-67) seconds ( P < 0.001), before increasing to 67 (49-97) and 85 (57-133) seconds after intervention. More nonbreathing newborns were ventilated in the intervention period (12.9%) compared with baseline (8.5%) and the postintervention years (10.6% and 9.4%) ( P < 0.001). Assumed fresh stillborns decreased significantly from baseline to intervention (3.2%-0.7%) ( P = 0.013). CONCLUSIONS: This QI study demonstrates an increase in nonbreathing newborns being ventilated within the Golden Minute and a significant reduction in fresh stillborns after introduction of an HBB QI/simulation intervention. Improvements are partially reversed after intervention, highlighting the need for continuous simulation-based training and research into QI efforts essential for sustainable changes.

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