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Updated: Jan 20, 2026
Flail Chest-I
Chest ultrasound compared to chest X-ray for pediatric pulmonary tuberculosis
Charlotte C Heuvelings1,2, Sabine Bélard1,2,3,4, Savvas Andronikou2,5
1Department of Infectious Diseases, Division of Internal Medicine, Amsterdam University Medical Centers, Amsterdam, The Netherlands.
Insights
Chest ultrasound detects more abnormalities than chest X-ray in diagnosing pediatric pulmonary tuberculosis (PTB). This imaging technique shows higher accuracy and is particularly effective in confirmed PTB cases.
Area of Science:
- Pediatric Radiology
- Infectious Diseases
- Diagnostic Imaging
Background:
- Chest ultrasound is increasingly used for diagnosing childhood pneumonia.
- Limited data exist on its utility for pediatric pulmonary tuberculosis (PTB).
Purpose of the Study:
- To compare the diagnostic findings of chest ultrasound with chest X-ray (CXR) in children with suspected PTB.
- To evaluate the effectiveness of chest ultrasound in different PTB categories.
Main Methods:
- 159 children (up to 13 years) with suspected PTB were enrolled.
- Bedside chest ultrasound findings were compared to CXR findings.
- Analysis was stratified by PTB category: confirmed, unconfirmed, and unlikely PTB.
Main Results:
- Chest ultrasound detected abnormalities in 72% of children, compared to 56% with CXR (P < .001).
- Ultrasound showed higher detection rates for pleural effusion and enlarged mediastinal lymph nodes.
- Inter-reader agreement was significantly higher for ultrasound compared to CXR for consolidation, pleural effusion, and lymph node assessment.
Conclusions:
- Chest ultrasound is a promising imaging modality for detecting abnormalities in pediatric pulmonary tuberculosis.
- It demonstrated higher sensitivity and better inter-reader agreement than CXR.
- Further research is recommended to establish its diagnostic accuracy against a gold standard.
Introduction:
Chest ultrasound is increasingly used to radiologically diagnose childhood pneumonia, but there are limited data on its use for pulmonary tuberculosis (PTB).
Aim:
Compare chest ultrasound with a chest X-ray (CXR) findings.
Methods:
Children (up to 13 years) with suspected PTB were enrolled. Bedside chest ultrasound findings were compared to CXR. The analysis was stratified by PTB category: confirmed PTB (microbiologically confirmed), unconfirmed PTB (clinical diagnosis with negative microbiological tests), or unlikely PTB (other respiratory diseases with improvement without tuberculosis treatment).
Results:
One hundred fifty-nine children were enrolled (57% boys, median age 26.6 months [interquartile range 15.1-59.3]). Ultrasound detected abnormalities in 72% (n = 114), CXR in 56% (n = 89), P < .001. Pleural effusion was detected on ultrasound in 15% (n = 24) compared 9% (n = 14) on CXR, P = .004, more in confirmed PTB (33%, n = 12 vs 8%, n = 4 unlikely PTB, P = .013). Ultrasound detected enlarged mediastinal lymph nodes more commonly (22%, n = 25) than CXR (6%, n = 10, P = .001); the size of lymph nodes in the unlikely category (1.0 cm) was smaller than the other two PTB categories (1.4 and 1.5 cm, P = .001). Inter-reader agreement (kappa Cohen) was higher for ultrasound than CXR for several findings (consolidation 0.67 vs 0.47, pleural effusion 0.86 vs 0.56, enlarged lymph nodes 0.56 vs 0.27).
Conclusion:
Ultrasound detected abnormalities more frequently than CXR with the higher inter-reader agreement; ultrasound abnormalities were most common in children with confirmed PTB. Ultrasound is a promising modality for detecting abnormalities in PTB. Further studies should evaluate the diagnostic accuracy of ultrasound against a gold standard.
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