Literature DB >> 19455024

In-hospital versus out-of-hospital pediatric cardiac arrest: a multicenter cohort study.

Frank W Moler1, Kathleen Meert, Amy E Donaldson, Vinay Nadkarni, Richard J Brilli, Heidi J Dalton, Robert S B Clark, Donald H Shaffner, Charles L Schleien, Kimberly Statler, Kelly S Tieves, Richard Hackbarth, Robert Pretzlaff, Elise W van der Jagt, Fiona Levy, Lynn Hernan, Faye S Silverstein, J Michael Dean.   

Abstract

OBJECTIVES: : To describe a large multicenter cohort of pediatric cardiac arrest (CA) with return of circulation (ROC) from either the in-hospital (IH) or the out-of-hospital (OH) setting and to determine whether significant differences related to pre-event, arrest event, early postarrest event characteristics, and outcomes exist that would be critical in planning a clinical trial of therapeutic hypothermia (TH).
DESIGN: : Retrospective cohort study.
SETTING: : Fifteen Pediatric Emergency Care Applied Research Network sites. PATIENTS: : Patients aged 24 hours to 18 years with either IH or OH CA who had a history of at least 1 minute of chest compressions and ROC for at least 20 minutes were eligible.
INTERVENTIONS: : None.
MEASUREMENTS AND MAIN RESULTS: : A total of 491 patients met study entry criteria with 353 IH cases and 138 OH cases. Major differences between the IH and OH cohorts were observed for patient prearrest characteristics, arrest event initial rhythm described, and arrest medication use. Several postarrest interventions were used differently, however, the use of TH was similar (<5%) in both cohorts. During the 0-12-hour interval following ROC, OH cases had lower minimum temperature and pH, and higher maximum serum glucose recorded. Mortality was greater in the OH cohort (62% vs. 51%, p = 0.04) with the cause attributed to a neurologic indication much more frequent in the OH than in the IH cohort (69% vs. 20%; p < 0.01).
CONCLUSIONS: : For pediatric CA with ROC, several major differences exist between IH and OH cohorts. The finding that the etiology of death was attributed to neurologic indications much more frequently in OH arrests has important implications for future research. Investigators planning to evaluate the efficacy of new interventions, such as TH, should be aware that the IH and OH populations differ greatly and require independent clinical trials.

Entities:  

Mesh:

Year:  2009        PMID: 19455024      PMCID: PMC2711020          DOI: 10.1097/CCM.0b013e3181a00a6a

Source DB:  PubMed          Journal:  Crit Care Med        ISSN: 0090-3493            Impact factor:   7.598


  43 in total

1.  First documented rhythm and clinical outcome from in-hospital cardiac arrest among children and adults.

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2.  Additive impact of in-hospital cardiac arrest on the functioning of children with heart disease.

Authors:  A A Bloom; J A Wright; R D Morris; R M Campbell; N S Krawiecki
Journal:  Pediatrics       Date:  1997-03       Impact factor: 7.124

Review 3.  Out-of-hospital pediatric cardiac arrest: an epidemiologic review and assessment of current knowledge.

Authors:  Aaron J Donoghue; Vinay Nadkarni; Robert A Berg; Martin H Osmond; George Wells; Lisa Nesbitt; Ian G Stiell
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4.  The Pediatric Risk of Mortality III--Acute Physiology Score (PRISM III-APS): a method of assessing physiologic instability for pediatric intensive care unit patients.

Authors:  M M Pollack; K M Patel; U E Ruttimann
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5.  Moderate hypothermia in neonatal encephalopathy: efficacy outcomes.

Authors:  Dorothea J Eicher; Carol L Wagner; Lakshmi P Katikaneni; Thomas C Hulsey; W Thomas Bass; David A Kaufman; Michael J Horgan; Sheila Languani; Jatinder J Bhatia; Lawrence M Givelichian; Koravangatta Sankaran; Jerome Y Yager
Journal:  Pediatr Neurol       Date:  2005-01       Impact factor: 3.372

6.  Whole-body hypothermia for neonates with hypoxic-ischemic encephalopathy.

Authors:  Seetha Shankaran; Abbot R Laptook; Richard A Ehrenkranz; Jon E Tyson; Scott A McDonald; Edward F Donovan; Avroy A Fanaroff; W Kenneth Poole; Linda L Wright; Rosemary D Higgins; Neil N Finer; Waldemar A Carlo; Shahnaz Duara; William Oh; C Michael Cotten; David K Stevenson; Barbara J Stoll; James A Lemons; Ronnie Guillet; Alan H Jobe
Journal:  N Engl J Med       Date:  2005-10-13       Impact factor: 91.245

7.  Long-term outcome of paediatric cardiorespiratory arrest in Spain.

Authors:  Jesús López-Herce; Cristina García; Antonio Rodríguez-Núñez; Pedro Domínguez; Angel Carrillo; Custodio Calvo; Miguel Angel Delgado
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8.  A prospective, population-based study of the demographics, epidemiology, management, and outcome of out-of-hospital pediatric cardiopulmonary arrest.

Authors:  P E Sirbaugh; P E Pepe; J E Shook; K T Kimball; M J Goldman; M A Ward; D M Mann
Journal:  Ann Emerg Med       Date:  1999-02       Impact factor: 5.721

Review 9.  Pediatric cardiopulmonary resuscitation: a collective review.

Authors:  K D Young; J S Seidel
Journal:  Ann Emerg Med       Date:  1999-02       Impact factor: 5.721

10.  Selective head cooling with mild systemic hypothermia after neonatal encephalopathy: multicentre randomised trial.

Authors:  Peter D Gluckman; John S Wyatt; Denis Azzopardi; Roberta Ballard; A David Edwards; Donna M Ferriero; Richard A Polin; Charlene M Robertson; Marianne Thoresen; Andrew Whitelaw; Alistair J Gunn
Journal:  Lancet       Date:  2005 Feb 19-25       Impact factor: 79.321

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  67 in total

Review 1.  Pediatric neurocritical care.

Authors:  Sarah Murphy
Journal:  Neurotherapeutics       Date:  2012-01       Impact factor: 7.620

2.  Cardiorespiratory arrest in children (out of hospital).

Authors:  Kristina Krmpotic; Hilary Writer
Journal:  BMJ Clin Evid       Date:  2015-12-18

Review 3.  The APA and the rise of pediatric generalist network research.

Authors:  Richard Wasserman; Janet R Serwint; Nathan Kuppermann; Rajendu Srivastava; Benard Dreyer
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4.  Noninvasive autoregulation monitoring in a swine model of pediatric cardiac arrest.

Authors:  Jennifer K Lee; Zeng-Jin Yang; Bing Wang; Abby C Larson; Jessica L Jamrogowicz; Ewa Kulikowicz; Kathleen K Kibler; Jennifer O Mytar; Erin L Carter; Hillary T Burman; Ken M Brady; Peter Smielewski; Marek Czosnyka; Raymond C Koehler; Donald H Shaffner
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5.  Regional brain injury on conventional and diffusion weighted MRI is associated with outcome after pediatric cardiac arrest.

Authors:  Ericka L Fink; A Panigrahy; R S B Clark; C R Fitz; D Landsittel; P M Kochanek; G Zuccoli
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6.  The first quantitative report of ventilation rate during in-hospital resuscitation of older children and adolescents.

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Journal:  Resuscitation       Date:  2011-03-29       Impact factor: 5.262

7.  Cardiac Arrest Outcomes in Children With Preexisting Neurobehavioral Impairment.

Authors:  James R Christensen; Beth S Slomine; Faye S Silverstein; Kent Page; Richard Holubkov; J Michael Dean; Frank W Moler
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8.  Early lactate elevations following resuscitation from pediatric cardiac arrest are associated with increased mortality*.

Authors:  Alexis A Topjian; Amy E Clark; T Charles Casper; John T Berger; Charles L Schleien; J Michael Dean; Frank W Moler
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9.  A quantitative analysis of out-of-hospital pediatric and adolescent resuscitation quality--A report from the ROC epistry-cardiac arrest.

Authors:  Robert M Sutton; Erin Case; Siobhan P Brown; Dianne L Atkins; Vinay M Nadkarni; Jonathan Kaltman; Clifton Callaway; Ahamed Idris; Graham Nichol; Jamie Hutchison; Ian R Drennan; Michael Austin; Mohamud Daya; Sheldon Cheskes; Jack Nuttall; Heather Herren; James Christenson; Dug Andrusiek; Christian Vaillancourt; James J Menegazzi; Thomas D Rea; Robert A Berg
Journal:  Resuscitation       Date:  2015-04-25       Impact factor: 5.262

Review 10.  Hypothermia for neuroprotection in children after cardiopulmonary arrest.

Authors:  Barnaby Scholefield; Heather Duncan; Paul Davies; Fang Gao Smith; Khalid Khan; Gavin D Perkins; Kevin Morris
Journal:  Cochrane Database Syst Rev       Date:  2013-02-28
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