Page 136 - Physiological based CPAP for preterm infants at birth Tessa Martherus
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Chapter 5
References
1. Morley CJ, et al. Nasal CPAP or intubation at birth for very preterm infants. N Engl J Med. 2008;358(7):700-8.
2. Finer NN, et al. Early CPAP versus surfactant in extremely preterm infants. N Engl J Med. 2010;362(21):1970-9.
3. Trevisanuto D, et al. Changes over time in delivery room management of extremely low birth weight infants in Italy. Resuscitation. 2014;85(8):1072-6.
4. Crawshaw JR, et al. Laryngeal closure impedes non-invasive ventilation at birth. Arch Dis Child Fetal Neonatal Ed. 2018;103(2):F112-F9.
5. Harding R, et al. Upper airway resistances in fetal sheep: the influence of breathing activity. Journal of Applied Physiology. 1986;60:160-5.
6. Renolleau S, et al. Thyroarytenoid muscle electrical activity during spontaneous apneas in preterm lambs. Am J Respir Crit Care Med. 1999;159(5 Pt 1):1396-404.
7. Moreau-Bussiere F, et al. Laryngeal response to nasal ventilation in nonsedated newborn lambs. J Appl Physiol (1985). 2007;102(6):2149-57.
8. van Vonderen JJ, et al. Effects of a sustained inflation in preterm infants at birth. J Pediatr. 2014;165(5):903-8 e1.
9. Dekker J, et al. Stimulating and maintaining spontaneous breathing during transition of preterm infants. Pediatr Res. 2019.
10. Dekker J, et al. Repetitive versus standard tactile stimulation of preterm infants at birth - A randomized controlled trial. Resuscitation. 2018;127:37-43.
11. Dekker J, et al. Caffeine to improve breathing effort of preterm infants at birth: a randomized controlled trial. Pediatr Res. 2017;82(2):290-6.
12. Dekker J, et al. The Effect of Initial High vs. Low FiO2 on Breathing Effort in Preterm Infants at Birth: A Randomized Controlled Trial. Front Pediatr. 2019;7:504.
13. Dekker J, et al. Increasing Respiratory Effort With 100% Oxygen During Resuscitation of Preterm Rabbits at Birth. Front Pediatr. 2019;7:427.
14. Hooper SB, et al. Imaging lung aeration and lung liquid clearance at birth. FASEB J. 2007;21(12):3329-37.
15. Siew ML, et al. Inspiration regulates the rate and temporal pattern of lung liquid clearance and lung aeration at birth. J Appl Physiol (1985). 2009;106(6):1888-95.
16. Siew ML, et al. The role of lung inflation and sodium transport in airway liquid clearance during lung aeration in newborn rabbits. Pediatr Res. 2013;73(4 Pt 1):443- 9.
17. Wyllie J, et al. European Resuscitation Council Guidelines for Resuscitation 2015: Section 7. Resuscitation and support of transition of babies at birth. Resuscitation. 2015;95:249-63.
18. Wyckoff MH, et al. Part 13: Neonatal Resuscitation: 2015 American Heart Association Guidelines Update for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care. Circulation. 2015;132(18 Suppl 2):S543-60.
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