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Updated: Jul 5, 2026

Subcostal Specimen Removal in Completely Portal Robotic Lobectomy
Published on: April 19, 2024
Early experience of pediatric thoracoscopic lobectomy in the UK
Robin Garrett-Cox1, Gordon MacKinlay, Fraser Munro
1Department of Pediatric Surgery, Royal Hospital for Sick Children, Edinburgh, United Kingdom.
Insights
Pediatric thoracoscopic lobectomy is feasible but previous lung infections increase conversion rates to open surgery. Early consideration for surgery before infection is advised.
Area of Science:
- Thoracic surgery
- Pediatric surgery
- Minimally invasive surgery
Background:
- Pediatric lobectomy is performed for various pulmonary conditions.
- Thoracoscopic techniques offer potential benefits over open procedures.
- Early UK experience with pediatric thoracoscopic lobectomy is reported.
Purpose of the Study:
- To report the initial experience with pediatric thoracoscopic lobectomy in two UK centers.
- To evaluate the feasibility and outcomes of this minimally invasive approach in children.
Main Methods:
- A retrospective review of 12 pediatric patients undergoing thoracoscopic lobectomy between 2000 and 2005.
- Analysis of diagnoses, patient demographics, surgical approach, and outcomes.
- Identification of factors influencing conversion to open thoracotomy or VATS.
Main Results:
- Seven congenital cystic adenomatous malformations, four bronchiectasis, and one teratoma were treated.
- All lobectomies were completed, but six patients required conversion to VATS or open thoracotomy.
- Previous pulmonary infections (9/12 patients) significantly complicated dissection, leading to higher conversion rates (5/6 conversions).
Conclusions:
- Previous pulmonary infections complicate thoracoscopic lobectomy, increasing the likelihood of conversion.
- Optimal timing for lobectomy is before infectious complications arise.
- Thoracoscopic lobectomy is achievable in patients with prior infections, albeit with a higher conversion rate.
Purpose:
The aim of this study was to report on the early experience of pediatric thoracoscopic lobectomy in two UK centers (Royal Hospital for Sick Children, Edinburgh, and Addenbrookes Hospital, Cambridge).
Methods:
Twelve patients between February 2000 and November 2005 were treated with a lobectomy for pulmonary disease.
Results:
Diagnoses included 7 congenital cystic adenomatous malformations, 4 patients with bronchiectasis, and 1 thoracic mature teratoma. The patients' ages ranged from 8 months to 15 years. In all patients, a thoracoscopic lobectomy was attempted. In all cases, the lobectomy was completed; however, in 6 patients, the conversion to either video-assisted thoracoscopic surgery (VATS) or open thoracotomy was required. Of note, 9 of the 12 patients had had previous lung infections prior to lobectomy. Five of 6 that required a conversion to VATS or open thoracotomy had had significant previous pulmonary infection, causing hilar lymphadenopathy and adhesions that complicated the dissection. The other case requiring a conversion to thoracotomy had abnormal hilar anatomy with an incomplete oblique fissure.
Conclusions:
Patients with a previous history of pulmonary infection can cause difficulty in dissection of the hilum that can necessitate a conversion to VATS or open thoracotomy. An infection prior to lobectomy can cause difficulty in completing the procedure safely thoracoscopically. Consideration of patients with pulmonary disease for lobectomy should be made prior to the onset of infectious complications. The thoracoscopic lobectomy can still be performed in patients with a preceding history of infectious complications, though a higher rate of conversion is likely.
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