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conventional and two new generation oximeters. Crit Care Med.

2000;28(5):1565.

13. Emery JR. Skin pigmentation as an influence on the accuracy of

pulse oximetry. J Perinatol. 1987;7:329.

14. Anderson JV. The accuracy of pulse oximetry in neonates: effects

of fetal hemoglobin and bilirubin. J Perinatol. 1987;7:323.

15. Hay WW, Brockway J, Eyzaguirre M. Neonatal pulse oximetry:

accuracy and reliability. Pediatrics. 1989;83:717.

16. Bucher H-U, Fanconi S, Baeckert P, et al. Hyperoxemia in newborn infants: detection by pulse oximetry. Pediatrics. 1989;84:226.

17. Shiao SY, Ou CN. Validation of oxygen saturation monitoring in

neonates. Am J Crit Care. 2007;16(2):168.

18. Saugstad OD, Aune D. In search of the optimal oxygen saturation

for extremely low birth weight infants: a systematic review and

meta-analysis. Neonatology. 2011;100:1.

19. Sandberg KL, Brynjarsson H, Hjalmarson O. Transcutaneous

blood gas monitoring during neonatal intensive care. Acta

Paediatr 2011;100(5):676.

20. Tobias JD. Transcutaneous carbon dioxide monitoring in infants

and children. Paediatr Anaesth. 2009;19(5):434.

21. Palmisano BW, Severinghaus JW. Transcutaneous PCO2 and

PO2: a multicenter study of accuracy. J Clin Monit. 1990;6:189.

22. Pearlman SA, Maisels MJ. Preductal and postductal transcutaneous oxygen tension measurements in premature newborns with

hyaline membrane disease. Pediatrics. 1989;83:98.

23. Golden SM. Skin craters—a complication of transcutaneous oxygen monitoring. Pediatrics. 1981;67:514.

24. Fink SE. Continuous PaO2 monitoring through the umbilical

artery. Neonat Intensive Care. 1990;3:16.

25. Durand DJ, Mickas NA. Blood gases: technical aspects and interpretation. In: Goldsmith JP, Karotkin EH, eds. Assisted Ventilation

of the Neonate. 5th ed. St. Louis: Elsevier Saunders, 2011:292.

26. Weiss I, Fink S, Harrison R, et al. Clinical use of continuous arterial blood-gas monitoring in the pediatric intensive care unit.

Pediatrics. 1999;103:440.

27. Coule LW, Truemper EJ, Steinhart CM, et al. Accuracy and utility of a continuous intra-arterial blood-gas monitoring system in

pediatric patients. Crit Care Med. 2001;29:420.

28. Meyers PA, Worwa C, Trusty R, et al. Clinical validation of a continuous intravascular neonatal blood gas sensor introduced

through an umbilical artery catheter. Respir Care. 2002;47(6):

682.

29. Rais-Bahrami K, Rivera O, Mikesell GT, Short BL. Continuous

blood gas monitoring using an in-dwelling optode method: comparison to intermittent arterial blood gas sampling in ECMO

patients. J Perinatol. 2002;22(6):472.

30. Rais-Bahrami K, Rivera O, Mikesell GT, Short BL. Continuous

blood gas monitoring using an in-dwelling optode method: clinical evaluation of the Neotrend® sensor using a Luer stub adaptor

to access the umbilical artery catheter. J Perinatol. 2002;22(5):

367.

31. Ganter M, Zollinger A. Continuous intravascular blood gas monitoring: development, current techniques, and clinical use of a

commercial device. Br J Anaesth. 2003;91(3):397.

32. Tobias JD, Connors D, Strauser L, et al. Continuous pH and

Pco2 monitoring during respiratory failure in children with the

Paratrend 7 inserted into the peripheral venous system. J Pediatr.

2000;136(5):623.


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