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Laser-Assisted Endoscopic Cricotracheal Stenosis Resection (CTSR) in Paediatric Congenital Cartilaginous Subglottic
Jaber Alshammari1, Abdullah Arafat1, Mohammed Halawani1
1Division of Otolaryngology Head & Neck Surgery, King Abdullah Specialized Children Hospital (KASCH), King Abdulaziz Medical City (KAMC), National Guard Health Affairs (NGHA), Riyadh, Saudi Arabia.
Insights
This study highlights a CO2 laser endoscopic technique for treating congenital subglottic stenosis (SGS) in children. The procedure achieved a 75% success rate, offering a less invasive alternative to open surgery.
Area of Science:
- Pediatric Surgery
- Otolaryngology
- Laser Surgery
Background:
- Subglottic stenosis (SGS) in children presents challenges due to varied treatment success rates.
- Endoscopic surgery is increasingly favored over open reconstruction for reduced invasiveness and shorter hospital stays.
Purpose of the Study:
- To evaluate an endoscopic CO2 laser technique for cricotracheal stenosis resection (CTSR) in high-grade congenital SGS.
- To assess the efficacy and safety of using a CO2 laser as a sole excision tool for complex congenital SGS.
Main Methods:
- Retrospective case study of eight pediatric patients with high-grade congenital SGS.
- Endoscopic intervention using a CO2 laser for CTSR, with procedures performed at 2-3 week intervals.
- Focus on natural epithelization, granulation tissue removal, and fibrosis management.
Main Results:
- A 75% success rate was achieved, defined by symptom resolution, airway patency, and decannulation.
- The CO2 laser demonstrated a low risk of exacerbating stenosis, enabling airway augmentation without open surgery.
- Shorter intervals between procedures were crucial for managing the healing process.
Conclusions:
- The CO2 laser is a viable endoscopic tool for treating congenital SGS, offering an alternative to open surgery or dilatation.
- The technique allows for airway restoration with minimal risk of worsening existing stenosis.
- Careful management of healing intervals is essential for successful outcomes in pediatric SGS treatment.
Abstract:
Subglottic stenosis (SGS) in children can be a congenital condition or acquired through injury such as from prolonged intubation. Surgeons face challenges in choosing the best SGS treatment for a particular patient because of variability in the success rate of each technique. Conventional open surgical resection and reconstruction have been proven effective but, in recent years, endoscopic surgery has become more prevalent as it eliminates the incision and reduces the surgery time and subsequent hospital stay. The purpose of this retrospective case study was to report on an endoscopic technique using a CO2 laser for cricotracheal stenosis resection (CTSR) for high-grade congenital SGS. From forty-five paediatric patients who underwent endoscopic intervention as a primary modality of treatment for high-grade SGS in a tertiary referral centre, a total of eight patients who met the inclusion criteria have been included in our study. This small patient series is the first to use a CO2 laser alone as a single excision tool to eliminate complex congenital SGS and restore airway patency. The procedure's goal was to return the airway to an early stage of postintubation injury prior to scar formation; therefore, surgical sessions at intervals of 2-3 weeks were performed to ensure natural epithelization, to remove any granulation tissue, and manage fibrosis. Successful treatment was defined as a resolution of symptoms, restoration of a normal patent airway with no stenosis, and decannulation. The success rate was 75%. Two outcomes need to be highlighted. First, the CO2 laser should be reconsidered as an excision tool for congenital SGS because of its low risk of exacerbating preexisting stenosis. It allows the surgeon to restore and augment the airway without the need for open surgery or dilatation. Second, the shorter interval between procedures is crucial for controlling the healing process and making sure that it is proceeding properly.
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