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Protocol and Guidelines for Point-of-Care Lung Ultrasound in Diagnosing Neonatal Pulmonary Diseases Based on International Expert Consensus
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Clinical Prediction Models for Pneumonia in Children Presenting to an Emergency Department in a Resource-Limited
Darlene R House1, Yogendra Amatya2, Benjamin K Nti3
1Emergency Medicine, Icahn School of Medicine at Mount Sinai, New York, USA.
Insights
Clinical findings alone are insufficient for diagnosing pediatric pneumonia in children under five. Lung ultrasound, while more accurate, requires further refinement for reliable diagnosis in this age group.
Area of Science:
- Pediatric Emergency Medicine
- Diagnostic Accuracy
- Clinical Prediction Models
Background:
- Pediatric pneumonia diagnosis often relies on radiography, despite lung ultrasound's superior accuracy.
- A need exists for improved clinical prediction models for pediatric pneumonia.
Purpose of the Study:
- To develop a clinical prediction model for pneumonia in children under five.
- Utilize lung ultrasound as the criterion standard for diagnosis.
Main Methods:
- Prospective study of 386 children under five with respiratory complaints.
- Compared clinical findings, chest X-ray, and lung ultrasound.
- Employed classification tree models to predict pneumonia.
Main Results:
- Lung ultrasound identified pneumonia in 32.4% of patients.
- A model with crepitations, retractions, and difficulty breathing showed 74.2% sensitivity and 38.5% specificity.
- Including chest X-ray improved sensitivity to 51.6% and specificity to 87.7%.
Conclusions:
- No single or combined clinical finding reliably diagnosed pneumonia in young children using lung ultrasound as the gold standard.
- Current clinical prediction rules may require revision.
Introduction:
Clinical prediction rules for pediatric pneumonia often rely on radiographic pneumonia for diagnosis; however, lung ultrasound has higher diagnostic accuracy. Our objective was to derive a clinical prediction model for pneumonia in children under five using lung ultrasound as the criterion standard.
Methods:
This was a prospective study of children under five presenting to an emergency department (ED) with respiratory complaints in a resource-limited setting. Clinical findings, chest X-ray, and lung ultrasound results were recorded for each patient. Classification tree models were used to predict pneumonia using lung ultrasound as the criterion standard. Separate models were used without and with inclusion of chest X-ray results.
Results:
Of 386 patients enrolled, 125 patients (32.4%) had pneumonia on lung ultrasound. The mean age was 20.8 (SD 15.5) months. Using recursive feature selection, three variables provided the best prediction for pneumonia, namely, crepitations, retractions, and difficulty breathing, demonstrating a sensitivity of 74.2% and specificity of 38.5%. The algorithm including chest X-ray provided a sensitivity of 51.6% and specificity of 87.7%.
Conclusions:
Using lung ultrasound as the gold standard, no single clinical finding or combination of clinical findings provided enough accuracy to reliably diagnose pneumonia in children under five years.
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