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26. Turley K, Tucker WY, Ebert PA: The changing role

of palliative procedures in the treatment of conge-

nital heart disease. J Thorac Cardiovasc Surg 79:194,

1980.

27. Castaneda AR, Trusler GA, Paul MA, et al: The early

results of treatment of simple transposition in the

current era. J Thorac Cardiovasc Surg 95:14, 1988.

28. Pacifico AD, Sand ME, Bargeron LM, Colvin EC:

Transatrial-transpulmonary repair of tetralogy of

Fallot. J Thorac Cardiovasc Surg 93:919, 1987.

29. Norwood WI Jr: Hypoplastic left heart syndrome.

Ann Thorac Surg 52:688, 1991.

30. Norwood WI, Jacobs ML, Murphy JD: Fontan pro-

cedure for hypoplastic left heart syndrome. Ann

Thorac Surg 54:1025, 1992.

31. Sano S, Ishino K, Kado H, et al: Outcome of right

ventricle-to-pulmonary artery shunt in first-stage

palliation of hypoplastic left heart syndrome: A

multi-institutional study. AnnThorac Surg 78:1951-

1958, 2004.

32. Azakie A, Martinez D, Sapru A, et al: Impact of right

ventricle to pulmonary artery conduit on outcome

of the modified Norwood procedure. Ann Thorac

Surg 77:1727-1733, 2004.

33. Pizarro C, Mroczek T, Malec E, Norwood WI: Right

ventricle to pulmonary artery conduit reduces

interim mortality after stage 1 Norwood for hypo-

plastic left heart syndrome. Ann Thorac Surg

78:1959-1964, 2004.

34. Tweddell JS, Hoffman GM, Fedderly RT, et al: Phe-

noxybenzamine improves systemic oxygen delivery

after the Norwood procedure. Ann Thorac Surg

67:161-168, 1999.

35. Nakano T, Kado H, Shiokawa Y, et al: The low resis-

tance strategy for the perioperative management of

the Norwood procedure. Ann Thorac Surg 77:908-

912, 2004.

36. Tchervenkov CI, Jacobs ML, Tahta SA: Congenital

Heart Surgery Nomenclature and Database Project:

Hypoplastic left heart syndrome. Ann Thorac Surg

69(Suppl):170-179, 2000.

37. Kumar RK, Newburger JW, Gauvreau K, et al: Com-

parison of outcomewhen hypoplastic left heart syn-

drome and transposition of the great arteries are

diagnosed prenatally versus when diagnosis of

these two conditions is made only postnatally. Am

J Cardiol 83:1649-1653, 1999.

38. Clancy RR, McGaurn S, Wernovsky G, et al: Preo-

perative risk-of-death prediction model in heart

surgery with deep hypothermic circulatory arrest in

the neonate. J Thorac Cardiovasc Surg 119:347-357,

2000.

39. Forbess JM, Cook N, Roth SJ, et al: Ten-year insti-

tutional experience with palliative surgery for hypo-

plastic left heart syndrome: Risk factors related to

stage I mortality. Circulation 92(Suppl):262-266,

1995.

40. Mahle WT, Spray TL, Wernovsky G, et al: Survival

after reconstructive surgery for hypoplastic left

heart syndrome: A fifteen year experience from a

single institution. Circulation 102:136-141, 2000.

41. Poirier NC, Drummond Webb JJ, Hisamochi K, et

al: Modified Norwood procedure with high flow

cardiopulmonary bypass strategy results in low

mortality without late arch obstruction. J Thorac

Cardiovasc Surg 120:875-884, 2000.

42. Malec E, Januszewska K, Kolz J, et al: Factors

influencing early outcome of Norwood procedure

for hypoplastic left heart syndrome. Eur J Cardio-

thorac Surg 18:202-206, 2000.

43. Licht DJ, Wang J, Silvestre DW, et al: Preoperative

cerebral blood flow is diminished in neonates with

severe congenital heart defects. J Thorac Cardiovasc

Surg 128:841-849, 2004.

44. Gildein HP, Ahmadi A, Fontan F, Mocellin R:

Special problems in Fontan-type operations for

complex cardiac lesions. Int J Cardiol 29:21, 1990.

45. Kopf GS, Kleinman CS, Hijazi ZM, et al: Fenestrated

Fontan operation with delayed transcatheter closure

of atrial septal defect: Improved results in high-risk

patients. J Thorac Cardiovasc Surg 103:1039, 1992.

46. Mayer JEJ, Bridges ND, Lock JE, et al: Factors asso-

ciated with marked reduction in mortality for

Fontan operations in patients with single ventricle.

J Thorac Cardiovasc Surg 103:444, 1992.

47. Fukumi D, Uchikoba Y, Maeda M, Ogawa S: Longi-

tudinal evaluation of anthracycline cardiotoxicity

by signal averaged electrocardiography in children

with cancer. Pediatr Int 44:134-140, 2002.

48. ThorneAC, Orazem JP, Shah NK, et al: Isoflurane

versus fentanyl: Hemodynamic effects in cancer

patients treated with anthracyclines. J Cardiothorac

Vasc Anesth 7:307-311, 1993.

49. Schreiner MS, Triebwasser A, Keon TP: Ingestion of

liquids compared with preoperative fasting in

pediatric outpatients. Anesthesiology 72:593, 1990.

50. Nicolson SC, Dorsey AT, Schreiner MS: Shortened

preanesthetic fasting interval in pediatric cardiac

surgical patients. Anesth Analg 74:694, 1992.

51. SahnDJ: Real-time two-dimensional Doppler echocar-

diographic flow mapping. Circulation 71:849, 1985.

52. Didier D, Ratib O, Beghetti M, et al: Morphologic

and functional evaluation of congenital heart

disease by magnetic resonance imaging. J Magn Res

Imag 10:639-655, 1999.

53. Stern DH, Gerson J, Allen FB, et al: Can we trust the

direct radial artery pressure immediately following

cardiopulmonary bypass? Anesthesiology 62:557,

1985.

54. Reynolds LM, Nicolson SC, Steven JM, et al:

Influence of sensor site location on pulse oximetry

kinetics in children. Anesth Analg 76:751, 1993.

55. Hagler DJ, Tajik AJ, Seward JB, et al: Intraoperative

two-dimensional Doppler echocardiography: A

preliminary study for congenital heart disease. J

Thorac Cardiovasc Surg 95:516, 1988.

56. Ungerleider RM, Kisslo JA, Greeley WJ, et al: Intrao-

perative prebypass and postbypass epicardial color

flow imaging in the repair of atrioventricular septal

defects. J Thorac Cardiovasc Surg 98:90, 1989.

57. Muhiudeen IA, Roberson DA, Silverman NH, et al:

Intraoperative echocardiography in infants and

children with congenital cardiac shunt lesions:

Transesophageal versus epicardial echocardiogra-

phy. J Am Coll Cardiol 16:1687, 1990.

58. Ungerleider RM, Greeley WJ, Kanter RJ, Kisslo JA:

The learning curve for intraoperative echocardio-

graphy during congenital heart surgery. AnnThorac

Surg 54:691, 1992.

59. Cyran SE, Myers JL, Gleason MM, et al: Application

of intraoperative transesophageal echocardiogra-

phy in infants and small children. J Cardiovasc Surg

(Torino) 32:318, 1991.

60. Shah PM, Stewart DA, Calalang CC, Alexson C:

Transesophageal echocardiography and the intrao-

perative management of pediatric congenital heart

disease: Initial experience with a pediatric esopha-

geal 2D color flow echocardiographic probe. J Car-

diothorac Vasc Anesth 6:8, 1992.

61. Ungerleider RM: Effects of cardiopulmonary bypass

and use of modified ultrafiltration. Ann Thorac

Surg 65:S35, 1998.

62. Boothroyd A: Magnetic resonance: Its current and

future role in paediatric cardiac radiology. Eur J

Radiol 26:154-162, 1998.

63. Andropoulos DB, Stayer SA, Diaz LK, et al: Neuro-

logical monitoring for congenital heart surgery.

Anesth Analg 99:1365-1375, 2004.

64. Andropoulos DB, Diaz LK, Fraser CD, et al: Is bila-

teral monitoring of cerebral oxygen saturation

necessary during neonatal aortic arch reconstruc-

tion? Anesth Analg 98:1267-1272, 2004.

65. Hickey PR, Wessel DL: Anesthesia for treatment of

congenital heart disease.

In

Kaplan JA (ed): Cardiac

Anesthesia, 2nd ed. Orlando, FL, Grune & Stratton,

1987, pp 635.

66. Rodriguez RA, Belway D, Rodriguez RA, Belway D:

Comparison of two different extracorporeal circuits

on cerebral embolization during cardiopulmonary

bypass in children. Perfusion 21:247-253, 2006.

67. Bishop CCR, Powell S, Rutt D, Browse NL: Trans-

cranial Doppler measurement of middle cerebral

artery blood flow velocity: A validation study.

Stroke 17:913, 1986.

68. Zimmerman AA, Burrows FA, Jonas RA, Hickey PR:

The limits of detectable cerebral perfusion by trans-

cranial Doppler sonography in neonates undergoing

deep hypothermic low-flow cardiopulmonary

bypass. J Thorac Cardiovasc Surg 114:594, 1997.

69. Lundar T, Lindberg H, Lindegaard KF, et al: Cere-

bral perfusion during major cardiac surgery in chil-

dren. Pediatr Cardiol 8:161, 1987.

70. Hillier SC, Burrows FA, Bissonnette B, Taylor RH:

Cerebral hemodynamics in neonates and infants

undergoing cardiopulmonary bypass and profound

hypothermic circulatory arrest: Assessment by

transcranial Doppler sonography. Anesth Analg

72:723, 1991.

71. Padayachee TS, Parsons S, Theobold R, et al: The

detection of microemboli in the middle cerebral

artery during cardiopulmonary bypass: A transcra-

nial Doppler ultrasound investigation using mem-

brane and bubble oxygenators. Ann Thorac Surg

44:298, 1987.

72. Van der Linden J, Casimir AH: When do cerebral

emboli appear during open heart operations? A

transcranial Doppler study. Ann Thorac Surg

51:237, 1991.

73. Abdul-Khaliq H, Troitzsch D, Schubert S, et al:

Cerebral oxygen monitoring during neonatal car-

diopulmonary bypass and deep hypothermic circu-

latory arrest [see comment]. Thorac Cardiovasc

Surg 50:77-81, 2002.

74. Greeley W, Ungerleider R, Smith LR, Reves J: Car-

diopulmonary bypass alters cerebral blood flow in

infants and children during and after cardiovascu-

lar surgery. Circulation 78II:356, 1988.

75. Goldberg CS, Bove EL, Devaney EJ, et al: A rando-

mized clinical trial of regional cerebral perfusion

versus deep hypothermic circulatory arrest: Outco-

mes for infants with functional single ventricle.

J Thorac Cardiovasc Surg 133:880-887, 2007.

76. Hoffman GM, Stuth EA, Jaquiss RD, et al: Changes

in cerebral and somatic oxygenation during stage 1

palliation of hypoplastic left heart syndrome using

continuous regional cerebral perfusion. J Thorac

Cardiovasc Surg 127:223-233, 2004.

77. Greeley WJ, Ungerleider RM, Smith LR, Reves JG:

The effects of deep hypothermic cardiopulmonary

bypass and total circulatory arrest on cerebral blood

flow in infants and children. J Thorac Cardiovasc

Surg 97:737, 1989.

78. Greeley WJ, Kern FH, Ungerleider RM, et al: The

effect of hypothermic cardiopulmonary bypass and

total circulatory arrest on cerebral metabolism in

neonates, infants, and children. J Thorac Cardiovasc

Surg 101:783, 1991.

79. Kern FH, Ungerleider RM, Quill TJ, et al: Cerebral

blood flow response to changes in arterial carbon

dioxide tension during hypothermic cardiopulmo-

nary bypass in children. J Thorac Cardiovasc Surg

101:618, 1991.

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Anestesia pediátrica

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