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Symmetrical excessive pectus excavatum in children
Akin Eraslan Balci1, Sevval Eren, Mehmet Oguzhan Ozyurtkan
1Euphrates University School of Medicine, Department of Thoracic Surgery, Elaziğ, Turkey.
Insights
Surgical repair of severe pectus excavatum in children improves cardiorespiratory function and alleviates symptoms. Kirchner wire support is a safe and effective method for chest cage stabilization post-surgery.
Area of Science:
- Pediatric Surgery
- Thoracic Surgery
- Cardiopulmonary Function
Background:
- Indications for pectus excavatum repair remain debated.
- Severe pectus excavatum can impact cardiorespiratory function in children.
Purpose of the Study:
- To evaluate surgical outcomes in children with severe pectus excavatum.
- To assess the impact of surgical repair on pulmonary function and cardiac function.
Main Methods:
- 27 children (6-15 years) with severe pectus excavatum underwent surgical repair.
- Surgical technique involved subperichondrial resection of deformed cartilages and Kirchner wire support.
- Pulmonary function tests and chest measurements were performed pre- and postoperatively.
Main Results:
- Surgery significantly improved the pectus severity index and pulmonary function, particularly in children with restricted lung function.
- Asthma-like symptoms resolved postoperatively in 3 patients; no patients experienced chest pain.
- Significant increases in right and left ventricular function were observed in cases of severe deformity. Kirchner wires were removed after 5 days with minor complications.
Conclusions:
- Surgical repair of severe pectus excavatum offers benefits beyond cosmetic improvement, enhancing cardiorespiratory capacity.
- The Kirchner wire technique is a safe and effective method for stabilizing the chest cage during pectus excavatum repair.
Objectives:
The indications for repair of pectus excavatum are controversial. We present our surgical results in children with severe pectus excavatum.
Methods:
27 children aged 6-15-years were included in the study. Pulmonary function tests and chest measurements were performed pre- and postoperatively. Deformed cartilages were resected subperichondrially, and a Kirchner wire was used to support the chest cage; it was removed 5 days after the operation. Fourteen children with restricted pulmonary function were considered to have excessive pectus excavatum.
Results:
3 patients had asthma-like symptoms that resolved postoperatively. None suffered chest pain postoperatively. Postoperative hospital stay was 7.1 days. Only minor complications occurred postoperatively. The mean pectus severity index was 0.27 ± 0.2 preoperatively and 0.41 ± 0.1 postoperatively (p < 0.05). For children with restricted pulmonary function, it was 0.17 ± 0.3 preoperatively and 0.38 ± 0.2 postoperatively (p < 0.05). Mean percentage of predicted forced expiratory volume in 1 s changed significantly from 79.2% ± 17.8% preoperatively to 83.6% ± 12.2% by the 3rd postoperative month. For children with a pectus severity index <0.2, it changed from 68.5% ± 13.2% preoperatively to 82.3% ± 13.4%. Pulmonary restriction correlated with a worse pectus severity index (r = 0.8). After 6 and 13 months, a minor decrease in pulmonary function was noted. Significant increases in right and left ventricular function occurred in cases of severe deformity.
Conclusions:
Surgery is recommended not only for cosmetic reasons but also to increase cardiorespiratory functional capacity and alleviate symptoms. Kirchner wires can be used safely.
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