a-ads798

Search This Blog

nativeadstera

aads970+250

729adst

798+90yilix

admetex 790+90

ad2bitcoin 728+90

zerads 728+90

aads468+60

zerads 468+60

admetex 460+60

aadsadaptabl

mob ylix

468+60asdster

468+60yilix

aads referal

ad2bit460+60

 


78 Section II ■ Physiologic Monitoring

7. Lopez E, Mathlouthi J, Lescure S, et al. Capnography in spontaneously breathing preterm infants with bronchopulmonary dysplasia. Pediatr Pulmonol. 2011;46(9):896.

8. Bhat YR, Abhishek N. Mainstream end-tidal carbon dioxide

monitoring in ventilated neonates. Singapore Med J. 2008;49(3):199.

9. Wu CH, Chou HC, Hsieh WS, et al. Good estimation of arterial

carbon dioxide by end-tidal carbon dioxide monitoring in the neonatal intensive care unit. Pediatr Pulmonol. 2003;35:292.

10. Trevisanuto D, Giuliotto S, Cavallin F, et al. End-tidal carbon dioxide

monitoring in very low birth weight infants: Correlation and agreement with arterial carbon dioxide. Pediatr Pulmonol. 2012:47:367.

11. McSwain SD, Hamel DS, Smith PB, et al. End-tidal and arterial

carbon dioxide measurements correlate across all levels of physiologic dead space. Respir Care. 2010;55(3):288.

12. Frankenfield DC, Alam S, Bekteshi E, et al. Predicting dead

space ventilation in critically ill patients using clinically available

data. Crit Care Med. 2010;38(1):288.

13. Morley TF, Giamo J, Maroszan E, et al. Use of capnography for

assessment of the adequacy of alveolar ventilation during weaning

from mechanical ventilation. Am Rev Respir Dis. 1993;148:339.

14. Hamel DS, Cheifetz IM. Do all mechanically ventilated pediatric

patients require continuous capnography? Respir Care Clin N

Am. 2006;12(3):501.

15. Gowda H. Should carbon dioxide detectors be used to check correct placement of endotracheal tubes in preterm and term neonates? Arch Dis Child. 2011;96(12):1201.

16. Langhan ML, Auerbach M, Smith AN, et al. Improving Detection

by Pediatric Residents of Endotracheal Tube Dislodgement with

Capnography: A Randomized Controlled Trial. J Pediatr. 2012.

[Epub ahead of print]

17. Sullivan KJ, Kissoon N, Goodwin SR. End-tidal carbon dioxide monitoring in pediatric emergencies. Pediatr Emerg Care. 2005;21(5):

327.

18. Molloy EJ, Deakins K. Are carbon dioxide detectors useful in neonates? Arch Dis Child Fetal Neonatal Ed. 2006;91(4):F295.

19. Aliwalas LL, Noble L, Nesbitt K, et al. Agreement of carbon dioxide levels measured by arterial, transcutaneous and end tidal

methods in preterm infants < or = 28 weeks gestation. J Perinatol.

2005;25(1):26.

20. Lopez E, Grabar S, Barbier A, et al. Detection of carbon dioxide

thresholds using low-flow sidestream capnography in ventilated

preterm infants. Intensive Care Med. 2009;35(11):1942.

21. Misra S, Koshy T, Mahaldar DA. Sudden decrease in end- tidal

carbon dioxide in a neonate undergoing surgery for type B interrupted aortic arch. Ann Card Anaesth. 2011;14:206.

22. Kattwinkel J, Perlman JM, Aziz K, et al. Neonatal Resuscitation:

2010 American Heart Association Guidelines for Cardiopulmonary

Resuscitation and Emergency Cardiovascular Care. Pediatrics. 2010;

126:e1400.

23. Schmolzer GM, Poulton DA, Dawson JA, et al. Assessment of flow

waves and colorimeteric CO2 detector for endotracheal tube placement during neonatal resuscitation. Resuscitation. 2011;82:307.


79

No comments:

Post a Comment

اكتب تعليق حول الموضوع

728x90'ads

Search This Blog