Management of fluid balance in continuous renal replacement therapy: technical evaluation in the pediatric setting

Z Ricci1, S Morelli, V Vitale

  • 1Department of Pediatric Cardiac Surgery, Bambino Gesù Hospital, Rome, Italy. z.ricci@libero.it

Insights

Accurate fluid management is crucial for critically ill children on renal replacement therapy. This study found continuous renal replacement therapy (CRRT) and net ultrafiltration (UF) delivery to be accurate and safe in neonates and small children.

Area of Science:

  • Pediatric Nephrology
  • Critical Care Medicine
  • Renal Replacement Therapy

Background:

  • Fluid overload and balance are critical in critically ill children needing renal replacement therapy.
  • Pediatric continuous renal replacement therapy (CRRT) requires careful fluid management, as errors can be lethal.
  • Accurate delivery of net ultrafiltration (UF) is essential for effective CRRT in pediatric patients.

Observation:

  • This study evaluated the accuracy of delivered versus prescribed net UF in 2 neonates and 2 small children undergoing CRRT, with or without extracorporeal membrane oxygenation (ECMO).
  • Net UF was defined as the total fluid removed from the patient over a specific period.
  • Prescribed net UF varied significantly between neonates and small children, with daily ranges from 200-600 mL and 1200-1800 mL, respectively.

Findings:

  • The percentage error of delivered net UF ranged from -1.6% to 5.8% of the prescribed amount, indicating high accuracy.
  • Patients on ECMO/CRRT showed a significantly higher mean error (3.024 mL/h) compared to CRRT-only patients (0.45 mL/h).
  • No significant difference in UF delivery accuracy was observed between neonates and small children when ECMO was not a factor.

Implications:

  • Continuous renal replacement therapy (CRRT) and net ultrafiltration (UF) delivery are demonstrated to be accurate, safe, and effective in high-risk pediatric patients.
  • The findings support the reliability of CRRT for fluid management in critically ill neonates and children.
  • Further research may explore the impact of ECMO on UF delivery accuracy in pediatric CRRT settings.

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