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Detection of Pulmonary Embolism in High-Risk Children
Kara E Hennelly1, Marc N Baskin2, Michael C Monuteuax2
1Division of Emergency Medicine, Washington University in St Louis School of Medicine, St Louis, MO.
Insights
The risk of pulmonary embolism (PE) is low in children without tachycardia or hypoxia. Existing adult PE diagnostic rules like Wells criteria and PERC should be used cautiously in pediatric patients.
Area of Science:
- Pediatric Emergency Medicine
- Cardiology
- Radiology
Background:
- Pulmonary embolism (PE) diagnosis in children lacks robust data.
- Adult-based clinical decision rules (CDRs) are often applied to pediatric patients.
- There is a need for pediatric-specific guidelines for PE evaluation.
Purpose of the Study:
- To assess the utility of adult-based PE algorithms in children.
- To develop a novel, pediatric-specific CDR for PE risk stratification.
- To improve diagnostic accuracy and reduce unnecessary imaging in pediatric PE evaluation.
Main Methods:
- Retrospective analysis of 561 pediatric patients (<22 years) with suspected PE.
- Evaluation of Wells criteria and Pulmonary Embolism Rule-out Criteria (PERC) performance.
- Development of a pediatric CDR using recursive partition analysis.
Main Results:
- PE was diagnosed in 6.4% of the study cohort.
- Wells criteria showed 86% sensitivity and 60% specificity.
- PERC rule had 100% sensitivity and 24% specificity.
- A new CDR (oral contraceptive use, tachycardia, SpO2 <95%) achieved 90% sensitivity and 56% specificity.
Conclusions:
- Pediatric patients without tachycardia, hypoxia, or estrogen therapy have a low risk of PE.
- The PERC rule and Wells criteria require cautious application in pediatric populations.
- The derived pediatric CDR offers a potentially improved approach for PE risk assessment in children.
Objective:
To evaluate 2 commonly used adult-based pulmonary embolism (PE) algorithms in pediatric patients and to derive a pediatric-specific clinical decision rule to evaluate children at risk for PE, given the paucity of data to guide diagnostic imaging in children for whom PE is suspected.
Study Design:
We performed a single-center retrospective study among 561 children <22 years of age undergoing either D-dimer testing or radiologic evaluation (computed tomography or ventilation-perfusion scan) in the emergency department setting for concern of PE. A diagnosis of PE required radiologic confirmation and anticoagulant treatment. We evaluated the test characteristics of the Wells criteria and Pulmonary Embolism Rule-out Criteria (PERC) low-risk rule and used recursive partition analysis to derive a clinical decision rule.
Results:
Among the 561 patients included in the study, 36 (6.4%) were diagnosed with PE. The Wells criteria demonstrated a sensitivity and specificity of 86% and 60%, respectively. The sensitivity and specificity of the PERC were 100% and 24%, respectively. A clinical decision rule including the presence of oral contraceptive use, tachycardia, and oxygen saturation <95% demonstrated a sensitivity and specificity of 90% and 56%, respectively, a positive and negative likelihood ratio of 2.0 and 0.2, and a positive and negative predictive value of 0.12 and 0.99, respectively.
Conclusions:
The risk of PE is low among children not receiving estrogen therapy and without tachycardia and hypoxia in those with an initial suspicion of PE. Application of the PERC rule and Wells criteria should be used cautiously in the pediatric population.
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