Operative Planning of Chest Wall Reconstructions Illustrated by a Large Defect in a Child
Dominik André-Lévigne1, Ali Modarressi1, Wolfram Karenovics2
1Division of Plastic, Reconstructive & Aesthetic Surgery, Geneva University Hospitals, Geneva, Switzerland.
Insights
Reconstructing large chest wall defects after Ewing sarcoma resection in children is complex. A chimeric latissimus-dorsi/serratus-anterior flap offers excellent coverage and aids recovery, facilitating radiotherapy.
Area of Science:
- Pediatric oncology
- Thoracic surgery
- Reconstructive surgery
Background:
- Large chest wall defects pose significant reconstructive challenges, particularly after oncologic resections.
- Effective reconstruction requires addressing tumor removal, chest wall stabilization, and soft tissue coverage.
- Pediatric cases, like this one involving Ewing sarcoma, present unique difficulties.
Observation:
- A 9-year-old boy with a large Ewing sarcoma underwent resection, necessitating chest wall reconstruction.
- Standard latissimus-dorsi flaps were insufficient for coverage due to the extensive resection.
- A Gore-Tex patch was used for stabilization of the chest wall defect.
Findings:
- A chimeric latissimus-dorsi/serratus-anterior flap provided tension-free, robust soft tissue coverage.
- Careful planning of bipedicled skin incisions preserved vascularization and facilitated exposure.
- The patient achieved excellent postoperative recovery, tolerating radiotherapy without wound complications.
Implications:
- This reconstructive technique offers a pragmatic solution for complex pediatric chest wall defects.
- Chimeric flaps can provide superior coverage with minimal donor site morbidity.
- Successful reconstruction is crucial for enabling adjuvant therapies like radiotherapy.
Abstract:
Reconstruction of large chest wall defects is challenging. Here we discuss the process of decision-making in planning chest wall reconstruction, considering the requirements of tumor removal, stabilization of the chest wall, and soft tissue coverage, illustrated by a case of a hemi-chest wall defect in a child. Ewing sarcoma measuring 10 × 9 × 13 cm was resected in a 9-year-old boy, followed by stabilization using a Gore-Tex patch. Due to extension of the oncologic resection far into the superomedial quadrant of the chest, tension-free coverage with a classical latissimus-dorsi flap could not be achieved. Integrating the serratus-anterior muscle into the flap creating a chimeric latissimus-dorsi/serratus-anterior flap allowed for excellent soft tissue coverage of the foreign body. As the skin could be preserved, careful incision planning was necessary to allow for best possible exposure during oncologic resection and flap harvest, while ensuring skin vascularization impaired by underlying tumor resection. Two vertical skin incisions were chosen, one presternal and a second in the mid-axillary fold delineating a large bipedicled skin flap. Postoperative recovery was excellent. Solid skin vascularization and adequate soft tissue coverage of the alloplastic material allowed for the patient to receive two cycles of postoperative radiotherapy without developing wound dehiscence. Careful interdisciplinary planning of skin incisions allowed for good exposure for tumor resection and flap harvest while preserving skin vascularization. Choosing a chimeric latissimus-dorsi/serratus-anterior flap provided larger coverage than a classical latissimus-dorsi flap with minimal additional donor site morbidity. Taken together, we here present a pragmatic solution to a complex problem.
Related Concept Videos
Flail Chest-II
Assessment:
1. Clinical Evaluation:
History:
Pneumothorax-II
Clinical Manifestations:


