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Balloon-assisted single-port thoracoscopic debridement in children with thoracic empyema
Burak Tander1, Levent Ustun, Ender Ariturk
1Department of Pediatric Surgery, Ondokuz Mayis University, Samsun, Turkey. btander@omu.edu.tr
Insights
This study shows balloon-aided single-port thoracoscopic debridement is effective for pediatric thoracic empyema. This minimally invasive approach offers a safe alternative to thoracotomy for late-stage cases.
Area of Science:
- Pediatric Surgery
- Thoracic Surgery
- Minimally Invasive Procedures
Background:
- Late-stage thoracic empyema in children presents significant challenges.
- Traditional treatments may involve invasive procedures like thoracotomy.
Purpose of the Study:
- To evaluate the efficacy of balloon-aided single-port thoracoscopic debridement for late-stage thoracic empyema in pediatric patients.
- To assess the safety and outcomes of this minimally invasive technique.
Main Methods:
- Retrospective review of 12 children with late-stage parapneumonic empyema.
- Diagnosis confirmed by thoracocentesis prior to thoracoscopy.
- A balloon-catheter system was used to create a working cavity for single-port thoracoscopic debridement and irrigation.
Main Results:
- The procedure was successfully performed using a single port in 11 out of 12 patients.
- Chest tubes were removed within a median of 11 days.
- No procedure-related complications were observed; minor postoperative issues included self-limited bronchopleural fistula in 4 patients.
Conclusions:
- Balloon-aided single-port thoracoscopic debridement is a beneficial and safe treatment for pediatric thoracic empyema.
- This technique provides a wider field of vision, potentially avoiding the need for thoracotomy.
- Single-port thoracoscopy is sufficient for effective dissection in these cases.
Purpose:
In this study, we evaluated the results of a balloon-aided single-port thoracoscopic debridement of late-stage thoracic empyema in children.
Patients And Methods:
We retrospectively reviewed age, gender, duration of prehospital illness, physical findings, surgical interventions, and the morbidity in 12 children with late-stage parapneumonic empyema. The diagnosis of pleural effusion was confirmed by a thoracocentesis before thoracoscopy. A balloon connected to a 12 F feeding tube was inserted into the thoracic cavity and inflated with air before the enterance of the thoracoscope. By this maneuver, a cavity was formed just under the enterance point. Thereafter, a routine debridement and chest irrigation was performed by thoracoscopy. Only one port was inserted in all but 1 patient, and the telescope was used as a dissecting tool. A thorax tube was inserted through the port site at the end of the procedure and left for the drainage.
Results:
The main symptoms of the patients were dyspnea, cough, and fever. The empyema was located on the right hemithorax in 5 patients and on the left side in 7 patients. A second port was necessary to enhance the dissection in 1 case. The chest tube was removed within 3-30 days (median, 11 days) after the surgical approach. No complication directly related to the procedure was seen. The only problems postoperatively were a self-limited and spontaneously resolved bronchopleural fistula in 4 patients, and we had to perform an additional thoracoscopy to resolve the remaining intrapleural adhesions in 1 child.
Conclusions:
Thoracoscopic debridement in patients with late-stage thoracic empyema may be very beneficial, and this treatment method may provide any further thoracotomy. A balloon inflated in the thoracic cavity may achieve a wider field of vision for thorascopic surgery, and single-port thoracoscopy is sufficient and safe for the dissection.
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