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PUBMED FOR HANDHELDS

Journal Abstract Search


97 related items for PubMed ID: 3313257

  • 21. The Effects of helium/oxygen mixture (heliox) before and after extubation in long-term mechanically ventilated very low birth weight infants.
    Migliori C, Gancia P, Garzoli E, Spinoni V, Chirico G.
    Pediatrics; 2009 Jun; 123(6):1524-8. PubMed ID: 19482763
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  • 22. [Effects of surfactant administration in premature infants with severe respiratory distress syndrome].
    Morón A, Luaces J, Esteban JC, Medina D, Sánchez JM, Manzano JL.
    Med Clin (Barc); 1996 Jun 29; 107(5):165-8. PubMed ID: 8758674
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  • 24. A randomized controlled trial of post-extubation bubble continuous positive airway pressure versus Infant Flow Driver continuous positive airway pressure in preterm infants with respiratory distress syndrome.
    Gupta S, Sinha SK, Tin W, Donn SM.
    J Pediatr; 2009 May 29; 154(5):645-50. PubMed ID: 19230906
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  • 26. Is it safer to intubate premature infants in the delivery room?
    Aly H, Massaro AN, Patel K, El-Mohandes AA.
    Pediatrics; 2005 Jun 29; 115(6):1660-5. PubMed ID: 15930230
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  • 27. Usefulness of the minute ventilation test in predicting successful extubation in newborn infants: a randomized controlled trial.
    Gillespie LM, White SD, Sinha SK, Donn SM.
    J Perinatol; 2003 Jun 29; 23(3):205-7. PubMed ID: 12732857
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  • 28. Predicting mortality in low-birth-weight infants with pulmonary interstitial emphysema.
    Gaylord MS, Thieme RE, Woodall DL, Quissell BJ.
    Pediatrics; 1985 Aug 29; 76(2):219-24. PubMed ID: 4022695
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  • 29. Bubble continuous positive airway pressure, a potentially better practice, reduces the use of mechanical ventilation among very low birth weight infants with respiratory distress syndrome.
    Nowadzky T, Pantoja A, Britton JR.
    Pediatrics; 2009 Jun 29; 123(6):1534-40. PubMed ID: 19482765
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  • 30. Tracheal extubation of the neonate at 2 to 3 cm H2O continuous positive airway pressure.
    Fox WW, Berman LS, Dinwiddie R, Shaffer TH.
    Pediatrics; 1977 Feb 29; 59(2):257-61. PubMed ID: 319416
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  • 31. Double-blind, randomized trial of a calf lung surfactant extract administered at birth to very premature infants for prevention of respiratory distress syndrome.
    Shapiro DL, Notter RH, Morin FC, Deluga KS, Golub LM, Sinkin RA, Weiss KI, Cox C.
    Pediatrics; 1985 Oct 29; 76(4):593-9. PubMed ID: 3900907
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  • 34. Repeat surfactant therapy for postsurfactant slump.
    Katz LA, Klein JM.
    J Perinatol; 2006 Jul 29; 26(7):414-22. PubMed ID: 16724122
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  • 36. Very early surfactant without mandatory ventilation in premature infants treated with early continuous positive airway pressure: a randomized, controlled trial.
    Rojas MA, Lozano JM, Rojas MX, Laughon M, Bose CL, Rondon MA, Charry L, Bastidas JA, Perez LA, Rojas C, Ovalle O, Celis LA, Garcia-Harker J, Jaramillo ML, Colombian Neonatal Research Network.
    Pediatrics; 2009 Jan 29; 123(1):137-42. PubMed ID: 19117872
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  • 37. A comparison of nasal intermittent versus continuous positive pressure delivery for the treatment of moderate respiratory syndrome in preterm infants.
    Bisceglia M, Belcastro A, Poerio V, Raimondi F, Mesuraca L, Crugliano C, Corapi UP.
    Minerva Pediatr; 2007 Apr 29; 59(2):91-5. PubMed ID: 17404558
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  • 38. Mechanical ventilation of very low birth weight infants: is volume or pressure a better target variable?
    Singh J, Sinha SK, Clarke P, Byrne S, Donn SM.
    J Pediatr; 2006 Sep 29; 149(3):308-13. PubMed ID: 16939738
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  • 39. Routine use of dexamethasone for the prevention of postextubation respiratory distress.
    Ferrara TB, Georgieff MK, Ebert J, Fisher JB.
    J Perinatol; 1989 Sep 29; 9(3):287-90. PubMed ID: 2809781
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