Association of Pediatric Postcardiac Arrest Ventilation and Oxygenation with Survival Outcomes

Aisha H Frazier1,2, Alexis A Topjian3, Ron W Reeder4

  • 1Nemours Cardiac Center, and.

Insights

Post-cardiac arrest hypoxemia (low oxygen) and hypercapnia (high carbon dioxide) were linked to decreased survival rates in pediatric patients. Hyperoxia (high oxygen) and hypocapnia (low carbon dioxide) showed no significant impact on survival outcomes.

Area of Science:

  • Pediatric critical care medicine
  • Cardiopulmonary resuscitation outcomes
  • Post-arrest physiological management

Background:

  • Conflicting data exists on the impact of post-cardiac arrest oxygen and carbon dioxide levels on outcomes in adult and pediatric populations.
  • Understanding these associations is crucial for optimizing post-resuscitation care in children.

Purpose of the Study:

  • To investigate the association between post-arrest hypoxemia and hyperoxemia with survival to hospital discharge in pediatric patients.
  • To determine the association between post-arrest hypocapnia and hypercapnia with survival to hospital discharge in pediatric patients.

Main Methods:

  • Prospective observational study conducted within a multicenter interventional trial (2016-2021).
  • Included pediatric patients (≤18 years) receiving chest compressions for cardiac arrest.
  • Defined and analyzed exposures: hypoxemia (<60 mmHg PaO2), hyperoxemia (≥200 mmHg PaO2), normoxemia (60-199 mmHg PaO2), hypocapnia (<30 mmHg PaCO2), hypercapnia (≥50 mmHg PaCO2), and normocapnia (30-49 mmHg PaCO2) within 24 hours post-arrest.
  • Used Poisson regression to assess associations with survival to hospital discharge.

Main Results:

  • Post-arrest hypoxemia was associated with significantly lower survival to hospital discharge (adjusted relative risk [aRR] = 0.71; 95% CI = 0.58-0.87).
  • Post-arrest hypercapnia was also associated with significantly lower survival to hospital discharge (aRR = 0.74; 95% CI = 0.64-0.84).
  • Neither hyperoxemia nor hypocapnia showed a significant difference in survival compared to normoxemia or normocapnia, respectively.

Conclusions:

  • Post-cardiac arrest hypoxemia and hypercapnia are independently associated with reduced survival rates in pediatric patients.
  • These findings highlight the importance of maintaining normoxemia and normocapnia in the post-arrest period for pediatric survivors.

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