Related Experiment Video
Updated: Sep 14, 2025

Delivery of In Vivo Acute Intermittent Hypoxia in Neonatal Rodents to Prime Subventricular Zone-derived Neural Progenitor Cell Cultures
Published on: November 2, 2015
Optimizing oxygen delivery for neonatal resuscitation through self-inflating bags in settings without air-oxygen
Tzu-Ching Sung1, Hsiang-Chin Hsu2, Yun-Ju Chen3
1School of Medicine for International Students, College of Medicine, I-Shou University, Kaohsiung, Taiwan.
Background:
Resuscitation guidelines recommend fractional inspired oxygen (FiO2) of 0.21-0.30 for infants at <35 weeks gestation. However, without an air-oxygen blender, an FiO2 < 0.3 is difficult to achieve with a self-inflating resuscitation bag (SIRB). This study investigated the effects of adjustments to the oxygen flow rate (FR), peak inspiratory pressure (PIP), and ventilation rate (VR) on FiO2 levels with SIRBs.
Methods:
Two nondisposable SIRBs were used: a 280 mL bag (40 cm H2O pop-off valve) and a 62 mL bag with a reservoir tube (25 and 40 cm H2O pop-off valve). Both SIRBs were supplied with 100 % oxygen and connected to a flow meter, pressure gauge, oxygen analyzer, and test lung. FR (0.5, 1, 2, 5, or 10 L/min), PIP (20-29, 30-39, or ≥ 40 cm H2O), and VR (40, 50, or 60/min) parameters were tested sequentially. FiO2 was measured every 30 s for 150 s total, and each parameter combination was evaluated three times. Data were analyzed with a stepwise generalized linear model.
Results:
FiO2 levels stabilized after 60-90 s of bagging across all settings, ranging from 0.27 to 0.82 and 0.40-1.0 for the 280 and 62 mL SIRBs, respectively. A higher FR increased FiO2 levels, whereas a higher PIP decreased FiO2 levels. VR increases did not affect FiO2 except at an FR ≥ 5 L/min. An FiO2 < 0.30 was achievable only with the 280 mL SIRB at 0.5 L/min FR and PIP >40 cm H2O. FR had the greatest effect (R2 = 0.4916) on FiO2. SIRB, PIP, VR, and bagging duration further improved the model's predictive power (R2 = 0.9578).
Conclusions:
A suitable SIRB, FR, PIP, and VR are crucial for FiO2 titration in resuscitation. Further validation of these findings in clinical studies is warranted.
Related Concept Videos
Oxygen Delivering System I: Nasal Cannula and Face Mask
Nasal Cannula
A nasal cannula is a lightweight tube split at one end into two prongs and placed in the nostrils. It is typically used to deliver low to medium levels of oxygen.
Suggested flow rate: The suggested flow rate for a nasal cannula typically ranges between 1 and 6 L/min.
Oxygen percentage setting:...
Oxygen Delivering System II: Venturi Mask and Transtracheal Oxygen
Venturi Mask
The Venturi mask, named after the Venturi effect, is designed to deliver precise oxygen concentrations. It consists of a large tube with an oxygen inlet that narrows down, causing a pressure drop that pulls air in through adjustable side ports. The mask is a lightweight,...
Cardiopulmonary Resuscitation II: ACLS Airway Management
Administering Oxygen by Mask
Administering oxygen by mask is a common nursing intervention that provides supplemental oxygen to patients with respiratory distress or chronic lung conditions. This procedure involves delivering oxygen at a specified rate through a face mask connected to an oxygen source.
Equipment
The equipment necessary for this procedure includes:
Administering Oxygen by Nasal Cannula
Nasal Cannulas
A nasal cannula is a lightweight tube split into two prongs placed in the nostrils,...
Oxygen Delivering System III: Tracheostomy and T-piece
Tracheostomy
A tracheostomy is a surgically created opening (stoma) in the anterior part of the trachea. It is used to establish a patient airway, bypass an upper airway obstruction, simplify the removal of secretions, permit long-term...

