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Author Spotlight: A 3D Digital Model for the Diagnosis and Treatment of Pulmonary Nodules
Published on: May 19, 2023
Natural history of incidental pulmonary nodules in children
Dagnachew Assefa1, Arthur B Atlas
1Respiratory Center for Children, Goryeb Children's Hospital, Atlantic Health System, Morristown, New Jersey.
Insights
Pediatric pulmonary nodules rarely grow, indicating a low malignancy risk. Adult guidelines for pulmonary nodule follow-up may not be suitable for children.
Area of Science:
- Pediatric Pulmonology
- Thoracic Imaging
- Diagnostic Algorithms
Background:
- Lack of evidence-based guidelines for pediatric pulmonary nodules leads to reliance on adult protocols.
- Incidental pulmonary nodules in children are frequently encountered in clinical practice.
Purpose of the Study:
- To evaluate the behavior and outcomes of incidentally discovered pulmonary nodules in pediatric patients.
- To assess the applicability of adult-based guidelines for managing pediatric pulmonary nodules.
Main Methods:
- Retrospective chart review of 36 pediatric patients with pulmonary nodules from 2000-2012.
- Analysis of nodule size changes on serial imaging (CT scans).
- Inclusion criteria: patients evaluated for pulmonary nodules at Goryeb Children's Hospital.
Main Results:
- 36 patients (median age 15 years) had 46 pulmonary nodules.
- Nodules >4mm in 27 patients showed no significant growth on follow-up CT.
- Most nodules either remained unchanged, decreased in size, or were not detected on follow-up.
Conclusions:
- Pediatric pulmonary nodules exhibit a low risk of malignancy, with minimal growth observed.
- Current adult-based guidelines (ACCP/Fleischner Society) may not be appropriate for routine follow-up of pediatric pulmonary nodules without known malignancy.
Rationale:
As there are no evidence based guidelines for the diagnosis and/or management of pulmonary nodules in children, there is an over reliance on the adult based algorithms when dealing with pulmonary nodules in children. We present our experience of pediatric patients evaluated for incidentally found pulmonary nodules.
Methods:
Retrospective chart review of patients diagnosed with a pulmonary nodule and evaluated at Goryeb Children's Hospital between January 2000 and December 2012.
Primary Outcome:
change in the size of the pulmonary nodule between the initial and follow-up imaging.
Results:
Thirty six patients with pulmonary nodule (21 male/15 female; Median [range] age 15 [5-20] years.) were included in the study. Chest CT was obtained for respiratory symptoms and/or abnormal chest radiograph in 19 (52%). Nine pulmonary nodules (25%) were identified on abdominal CT obtained for abdominal symptoms. A total of 46 nodules were identified in 36 patients. Nine of the pulmonary nodules (9 patients) were ≤4 mm in size, 37 of the pulmonary nodules (27 patients) were >4 mm in size. Twenty-two of the 27 (81%) patients with nodule size >4 mm had follow-up CT: 14 nodules (54%) remained unchanged in size, 5 nodules (19%) decreased in size, and 7 nodules (27%) were not detected.
Conclusion:
Our review of 36 patients with pulmonary nodules shows no obvious growth of the nodules over the study period, suggesting low risk of malignancy. Routine follow-up chest computer tomography using ACCP/Fleischner Society guidelines may not apply in children without known malignancy.
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