ABC | Volume 113, Nº3, Setembro 2019

Atualização Atualização da Diretriz de Ressuscitação Cardiopulmonar e Cuidados Cardiovasculares de Emergência da Sociedade Brasileira de Cardiologia – 2019 Arq Bras Cardiol. 2019; 113(3):449-663 911. Girotra S, Spertus JA, Li Y, Berg RA, Nadkarni VM, Chan PS; American Heart Association Get With the Guidelines-Resuscitation Investigators. Survival trends in pediatric in-hospital cardiac arrests: an analysis from GetWith The Guidelines-Resuscitation. Circ CardiovascQual Outcomes. 2013;6(1):42-9. 912. Maconochie IK, Bingham R, Eich C, López-Herce J, Rodríguez-Núñez A, Rajka T, et al; Paediatric life support section Collaborators. European Resuscitation Council Guidelines for Resuscitation 2015. Section 6. Paediatric life support. Resuscitation. 2015 Oct;95:223-48. 913. GonzalezMM, Timerman S, Oliveira RG, Polastri TF, Dallan LAP, Araújo S, et al; Sociedade Brasileira deCardiologia. I Guideline for cardiopulmonary resuscitation and emergency cardiovascular care - Brazilian Society of Cardiology: Executive Summary. Arq Bras Cardiol. 2013;100(2):105-13. 914. Marsch S, Tschan F, Semmer NK, Zobrist R, Hunziker PR, Hunziker S. ABC versus CAB for cardiopulmonary resuscitation: a prospective, randomized simulator-based trial. Swiss MedWkly. 2013 Sep 6;143:w13856. 915. Sekiguchi H, Kondo Y, Kukita I. Verification of changes in the time taken to initiate chest compressions according to modified basic life support guidelines. Am J Emerg Med. 2013;31(8):1248-50. 916. Lubrano R, Cecchetti C, Bellelli E, Gentile I, Loayza, Levano H, et al. Comparison of times of intervention during pediatric CPR maneuvers using ABC and CAB sequences: a randomized trial. Resuscitation. 2012;83(12):1473-7. 917. PeddySB,HazinskiMF,LaussenPC,ThiagarajanRR,HoffmanGM,Nadkarni V, et al. Cardiopulmonary resuscitation: special considerations for infants andchildrenwithcardiacdisease.CardiolYoung.2007;17(Suppl2):116-26. 918. Sutton RM, French B, Niles DE, Donoghue A, Topjian AA, Nishisaki A, et al. 2010 AmericanHeart Association recommended compression depths during pediatric in-hospital resuscitations are associated with survival. Resuscitation. 2014;85(9):1179-84. 919. Idris AH, Guffey D, Pepe PE, Brown SP, Brooks SC, Callaway CW, et al; Resuscitation Outcomes Consortium Investigators. Chest compression rates and survival following out-of-hospital cardiac arrest. Crit Care Med. 2015;43(4):840-8. 920. Kitamura T, Iwami T, Kawamura T, Nagao K, Tanaka H, Nadkarni VM, et al; Implementationworking group for All-JapanUtstein Registry of the Fire andDisaster Management Agency. Conventional and chest-compression- only cardiopulmonary resuscitation by bystanders for children who have out-of-hospital cardiac arrests: a prospective, nationwide, population- based cohort study. Lancet. 2010;375(9723):1347-54. 921. Goto Y, Maeda T, Goto Y. Impact of dispatcher-assisted bystander cardiopulmonary resuscitation on neurological outcomes in childrenwith out-of-hospital cardiac arrests: a prospective, nationwide, population based cohort study. J AmHeart Assoc. 2014;3(3):e000499. 922. Valenzuela TD, Kern KB, Clark LL, Berg RA, Berg MD, Berg DD, et al. Interruptions of chest compressions during emergency medical systems resuscitation. Circulation. 2005;112(9):1259-65. 923. Peska E, Kelly AM, Kerr D, GreenD. One-handed versus two-handed chest compressions in paediatric cardio-pulmonary resuscitation. Resuscitation. 2006;71(1):65-9. 924. Atkins DL, Berger S, Duff JP, Gonzales JC, Hunt EA, Joyner BL, et al. Part 11: Pediatric Basic Life Support and Cardiopulmonary ResuscitationQuality: 2015 American Heart Association Guidelines for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care. Circulation. 2015;132(18 Suppl 2):S519-25. 925. de Caen AR, Berg MD, Chameides L, Gooden CK, Hickey RW, Scott HF, et al. Part 12: Pediatric Advanced Life Support: 2015 American Heart AssociationGuidelines forCardiopulmonaryResuscitationandEmergency Cardiovascular Care. Circulation. 2015;132(18 Suppl 2):S526-42. 926. Maconochie IK, Bingham R, Eich C, López-Herce J, Rodríguez-Núñes A, Rajka T, et al. European Resuscitation Council Guidelines for Resuscitation 2015: Section 6. Paediatric life support. Resuscitation. 2015;95:223-48. 927. Girotra S, Spertus JA, Li Y, Berg RA, Nadkarni VM, Chan PS; American Heart Association Get With The Guidelines-Resuscitation Investigators. Survival trends in pediatric in-hospital cardiac arrests: an analysis from GetWith The Guidelines-Resuscitation. Circ CardiovascQual Outcomes. 2013;6(1):42-9. 928. Tibballs J, Carter B, Kiraly NJ, Ragg P, Clifford M. External and internal biphasic direct current shock doses for pediatric ventricular fibrillation and pulseless ventricular tachycardia. Pediatr Crit Care Med. 2011;12(1):14- 20. 929. Berg MD, Samson RA, Meyer RJ, Clark LL, Valenzuela TD, Berg RA. Pediatric defibrillation doses often fail to terminate prolonged out-of- hospitalventricular fibrillation inchildren.Resuscitation.2005;67(1):63-7. 930. Rodríguez-Núñez A, Lopez-Herce J, Garcia C, Dominguez P, Carrillo A, Bellon JM; Spanish Study Group of Cardiopulmonary Arrest in Children. Pediatric defibrillation after cardiac arrest: initial response and outcome. Crit Care. 2006;10(4):R113. 931. Rossano JW, Quan L, Kenney MA, Rea TD, Atkins DL. Energy doses for treatment of out-of-hospital pediatric ventricular fibrillation. Resuscitation. 2006;70(1):80-9. 932. Berg RA, Chapman FW, Berg MD, Hilwig RW, Banville I, Walker RG, et al. Attenuated adult biphasic shocks compared with weight-based monophasic shocks in a swine model of prolonged pediatric ventricular fibrillation. Resuscitation. 2004;61(2):189-97. 933. BergMD, Banville IL, Chapman FW, Walker RG, GaballaMA, Hilwig RW, et al. Attenuating the defibrillation dosage decreases postresuscitation myocardial dysfunction in a swine model of pediatric ventricular fibrillation. Pediatr Crit Care Med. 2008;9(4):429-34. 934. Berg RA, Samson RA, Berg MD, Chapman FW, Hilwig RW, Banville I, et al. Better outcome after pediatric defibrillation dosage than adult dosage in a swine model of pediatric ventricular fibrillation. J Am Coll Cardiol. 2005;45(5):786-9. 935. Tang W, Weil MH, Jorgenson D, Klouche K, Morgan C, Yu T, et al. Fixed- energy biphasic waveform defibrillation in a pediatric model of cardiac arrest and resuscitation. Crit Care Med. 2002;30(12):2736-41. 936. Walcott GP, Melnick SB, Killingsworth CR, Ideker RE. Comparison of low-energy versus high-energy biphasic defibrillation shocks following prolonged ventricular fibrillation. Prehosp Emerg Care. 2010;14(1):62-70. 937. Eftestol T, Sunde K, Steen PA. Effects of interrupting precordial compressions on the calculated probability of defibrillation success during ou-of-hospital cardiac arrest. Circulation. 2002;105(19):2270-3. 938. Mittal S, Ayati S, Stein KM, Knight BP, Morady F, Schwartzman D, et al. Comparison of a novel rectilinear biphasic waveformwith a damped sine wave monophasic waveform for transthoracic ventricular defibrillation. ZOLL inverstigators. J Am Coll Cardil. 1999;34(5):1595-601. 939. Van Alem AP, Chapman FW, Lank P, Hart AA, Koster RW. A prospective, randomized and blinded comparison of first shock success ofmonophasic and biphasic waveforms in out-of-hospital cardiac arrest. Resuscitation. 2003;58(1):17-24. 940. Rea TD, HelbockM, Perry S, GarciaM, CloydD, Becher L, et al. Increasing use of cardiopulmonary resuscitation during out-of-hospital ventricular fibrillation arrest: survival implication of guideline changes. Circulation. 2006;114(25):2760-5. 941. Menegazzi JJ, Hsieh M, Niemann JT, Swor RA. Derivation of clinical predictor of failed rescue shock during out-of-hospital ventricular defibrillation. Prehosp Emerg Care. 2008;12(3):347-51. 942. Rea TD, Shah S, Kidenchuk PJ, Copass MK, Cobb LA. Automated external defibrillator: to what extent does the algorithm delay CPR? Ann Emerg Med. 2005;46(2):132-41. 943. Becker L, Gold LS, Eisenberg M, White L, Hearne T, Rea T. Ventricular fibrillation in King County, Washington: a 30-year perspective. Resuscitation. 2008;79(1):22-7. 651

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