Investigation of Childhood Pneumonia With Thoracic Ultrasound: A Comparison Between X-ray and Ultrasound
Ayşenur Buz Yaşar1, Merve Tarhan2, Basak Atalay3
1Department of Radiology, İzzet Baysal State Hospital, Bolu.
Insights
Ultrasound (US) imaging is a safe and effective tool for diagnosing childhood pneumonia, offering higher accuracy than chest x-rays. This study shows US can replace radiation-based imaging in pediatric pneumonia diagnosis.
Area of Science:
- Pediatric Radiology
- Diagnostic Imaging
- Pulmonology
Background:
- Childhood pneumonia is a frequent condition requiring diagnostic imaging.
- Chest x-rays are standard but involve radiation exposure in children.
- Ultrasound (US) offers a radiation-free alternative for pediatric imaging.
Purpose of the Study:
- To evaluate the diagnostic accuracy of ultrasound (US) compared to chest x-ray for childhood pneumonia.
- To assess the safety and efficiency of US in pediatric pneumonia diagnosis.
- To compare US findings across different pediatric age groups.
Main Methods:
- A comparative study involving 133 children diagnosed with pneumonia between 2019 and 2021.
- Radiologists performing US scans were blinded to chest x-ray interpretations.
- Diagnostic accuracy was compared using McNemar test and receiver operating characteristic curves.
Main Results:
- Ultrasound demonstrated a significantly higher diagnostic accuracy (Area Under Curve: 0.94) than chest x-ray (Area Under Curve: 0.76).
- The proportion of consolidation detected by US and chest x-ray differed significantly (P < 0.001).
- School-aged children showed longer hospital stays and more frequent consolidation, air bronchograms, and pleural effusions.
Conclusions:
- Thoracic ultrasound is a safe and efficient imaging modality for diagnosing pediatric pneumonia.
- US imaging can be utilized as a primary diagnostic tool, reducing radiation exposure in children.
- Further analysis confirmed good interobserver agreement for chest x-ray interpretation (κ = 0.661).
Abstract:
Childhood pneumonia is a common entity, and chest x-rays are widely used as an initial diagnostic step. To avoid radiation exposure in the pediatric age group, we assessed whether the diagnostic accuracy of ultrasound (US) imaging is sufficient in the diagnosis. One hundred thirty-three children with pneumonia (72 girls/61 boys) were participated to study between 2019 and 2021. All participants had a chest x-ray. Radiologists who perform the US scans and interpret the x-rays were blinded to each other. A comparative analysis was also done to assess US findings on pneumonia for different age groups. We compare the diagnostic accuracy of US and x-rays by McNemar test and receiver operating characteristic curves. Intraclass correlation coefficient values were calculated for the assessment of interobserver agreement of x-ray evaluation. The participants' ages ranged from 1 month to 17 years and 8 months with a median age of 24 months (Q 1 : 8 and Q 3 : 66 months). Hospital stay lengths were longer, consolidation depths were greater, and presence of air bronchogram or pleural effusion was more frequent in school-age children. The proportion of consolidation seen on chest x-ray and transthoracic US scan was significantly different ( P < 0.001). The area under the curve was greater in the US than in the chest x-ray (area under the curve, 0.94 and 0.76 respectively). There was a good agreement between the 2 interpreters on chest x-ray assessment ( κ = 0.661). The thoracic US can be used as a safe and efficient imaging tool in the diagnosis of pediatric pneumonia.
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