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Defining massive transfusion in civilian pediatric trauma
Eric Rosenfeld1, Patricio Lau1, Wei Zhang2
1Department of Pediatric Surgery, Texas Children's Hospital and Baylor College of Medicine, Houston, TX.
Insights
A new definition for massive transfusion (MT) in pediatric trauma is proposed: 37 mL/kg of blood products within 4 hours. This threshold accurately predicts early mortality and the need for hemorrhage control procedures in severely injured children.
Area of Science:
- Pediatric Trauma Care
- Transfusion Medicine
- Emergency Medicine
Background:
- Defining massive transfusion (MT) is crucial for timely intervention in pediatric trauma.
- Existing definitions may not optimally capture the severity of hemorrhage in children.
Purpose of the Study:
- To identify an optimal definition for massive transfusion (MT) in civilian pediatric trauma.
- To establish a transfusion threshold that predicts critical outcomes.
Main Methods:
- Analysis of severely injured children (age ≤18 years, ISS ≥25) from the 2014-2015 Trauma Quality Improvement Program.
- Exclusion of patients with traumatic brain injury or non-survivable injuries.
- Utilized receiver operating characteristic curves and sensitivity/specificity analysis to determine the MT threshold.
Main Results:
- An optimal threshold of 37 mL/kg transfused blood products within 4 hours was identified for predicting early mortality.
- This 37 mL/kg/4h threshold significantly predicted the need for hemorrhage control procedures (OR 8.60) and early mortality (OR 4.24).
- Overall mortality in the study cohort was 27%.
Conclusions:
- A massive transfusion protocol (MTP) threshold of 37 mL/kg/4h effectively predicts hemorrhage control needs and early mortality in pediatric trauma.
- This definition offers a timely prognostic indicator for clinicians.
- The proposed threshold can enhance research methodology and optimize resource allocation in pediatric trauma care.
Purpose:
The purpose of this study was to identify an optimal definition of massive transfusion (MT) in civilian pediatric trauma.
Methods:
Severely injured children (age ≤18 years, injury severity score ≥25) in the Trauma Quality Improvement Program research datasets 2014-2015 that received blood products were identified. Children with traumatic brain injury and non-survivable injuries were excluded. Early mortality was defined as death within 24 h and delayed mortality as death after 24 h from hospital admission. Receiver operating curves and sensitivity and specificity analysis identified an MT threshold. Continuous variables are presented as median [IQR].
Results:
Of the 270 included children, the overall mortality was 27% (N = 74). There were no differences in demographics or mechanism of injury between children that lived or died. Sensitivity and specificity for early mortality was optimized at a 4-h transfusion volume of 37 ml/kg. After controlling for other significant variables, a threshold of 37 ml/kg/4 h predicted the need for a hemorrhage control procedure (OR 8.60; 95% CI 4.25-17.42; p < 0.01) and early mortality (OR 4.24; 95% CI 1.96-9.16; p < 0.01).
Conclusion:
An MTP threshold of 37 mL/kg/4 h of transfused blood products predicted the need for hemorrhage control procedures and early mortality. This threshold may provide clinicians with a timely prognostic indicator, improve research methodology, and resource utilization.
Type Of Study:
Diagnostic Test.
Level Of Evidence:
III.
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