Effect of Red Blood Cell Transfusion on Regional Tissue Oxygenation in Pediatric Cardiac Surgery Patients

Victoria J Surma1, Ankur Patel2, Derek K Ng2

  • 1From the Department of Anesthesiology/Critical Care Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland.

Insights

Red blood cell (RBC) transfusions did not significantly improve oxygenation in pediatric cardiac surgery patients. However, transfusions did raise cerebral oxygenation above a critical threshold in most cases, suggesting personalized transfusion strategies may be beneficial.

Area of Science:

  • Pediatric Critical Care Medicine
  • Cardiovascular Surgery
  • Transfusion Medicine

Background:

  • Pediatric patients undergoing cardiac surgery in the ICU frequently receive red blood cell (RBC) transfusions.
  • Data-driven decision-making for transfusions in this population requires further investigation.

Purpose of the Study:

  • To assess the impact of RBC transfusions on cerebral and somatic regional oxygenation (rSO2) in pediatric ICU patients post-cardiac surgery.
  • To inform transfusion strategies in this vulnerable patient group.

Main Methods:

  • Retrospective analysis of pediatric patients (>28 days to <18 years) undergoing biventricular cardiac surgery.
  • Evaluation of pre- and post-RBC transfusion cerebral and somatic rSO2.
  • Statistical adjustment for hemoglobin levels and potential confounders.

Main Results:

  • No statistically significant increase in cerebral or somatic rSO2 was observed post-transfusion after adjusting for confounders.
  • In 16% of transfusions, pretransfusion cerebral rSO2 was below the critical threshold of 50%.
  • Of these, 73% of transfusions resulted in posttransfusion cerebral rSO2 >50%.

Conclusions:

  • RBC transfusions did not significantly alter cerebral or somatic rSO2 in pediatric cardiac surgery ICU patients.
  • Transfusions effectively improved cerebral oxygenation above a critical threshold in a majority of cases where it was initially low.
  • Future research should explore personalized transfusion approaches based on within-patient rSO2 trends.
Abstract

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