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Published on: January 17, 2011
Airway management in children with major craniofacial anomalies
N Sculerati1, M D Gottlieb, M S Zimbler
1Department of Otolaryngology, New York University School of Medicine, New York, USA.
Insights
Craniofacial deformities significantly impact children's airways, with nearly 20% requiring tracheotomy. Specific diagnoses like craniofacial synostosis increase this risk, while early intervention is key for optimal development.
Area of Science:
- Plastic Surgery
- Pediatric Otolaryngology
- Craniofacial Surgery
Background:
- Craniofacial deformities present complex challenges for airway management in pediatric populations.
- Understanding the factors influencing surgical airway intervention is crucial for optimizing patient outcomes.
Purpose of the Study:
- To delineate clinical characteristics affecting the airway in children with craniofacial deformities.
- To identify factors associated with the need for tracheotomy and predict decannulation timelines.
- To evaluate interventions that facilitate airway improvement and decannulation.
Main Methods:
- A five-year retrospective chart review was conducted at a tertiary care center.
- Two hundred fifty-one pediatric patients with major craniofacial bony anomalies undergoing surgery were included.
- Data on airway interventions, diagnoses, and patient characteristics were analyzed.
Main Results:
- Nearly 20% of patients (47/251) required tracheotomy, with craniofacial synostosis and mandibulofacial dysostoses showing the highest rates.
- Age at tracheotomy influenced cannulation duration; early placement (before age 4) resulted in longer durations.
- Cleft palate correlated with reduced tracheotomy risk, while ventriculoperitoneal shunts increased risk.
Conclusions:
- The need for surgical airway management is strongly linked to specific craniofacial diagnoses.
- Severe airway compromise in infants, often due to midface retrusion, necessitates early tracheotomy for optimal growth.
- Staged surgical interventions can lead to successful decannulation in most cases.
Objectives:
Delineation of clinical characteristics affecting the airway in a cohort of craniofacially deformed children. What factors differ between patients requiring and those not requiring surgical airway intervention? What factors predispose to the need for tracheotomy? When can decannulation be expected if tracheotomy is required? What interventions aid decannulation?
Study Design:
Five-year retrospective chart review at tertiary center.
Methods:
Two hundred fifty-one patients met the following entry criteria: enrollment in the New York University Institute of Reconstructive and Plastic Surgery's Craniofacial Clinic and admission to Tisch Hospital in Manhattan for surgery from 1990 to 1994. Hospital, clinic, and departmental office records were reviewed. All patients had major craniofacial bony anomalies and underwent administration of general anesthesia at least once.
Results:
Nearly 20% of all children required tracheotomy (47/251). Craniofacial synostosis patients (Crouzon, Pfeiffer, or Apert syndrome) had the highest rate of tracheotomy (48% [28/59]). Mandibulofacial dysostoses patients (Treacher Collins or Nager syndrome) had the next highest rate (41% [28/59]). Patients with oculo-auriculo-vertebral sequence were less likely to undergo tracheotomy (22% [9/41]). Children with craniosynostosis rarely required a surgical airway, unless there was marked associated facial dysmorphism (1% [1/72]). The duration of cannulation was related to the age at tracheotomy in a bimodal distribution. Generally, tracheotomies required before age 4 years remained for several years, whereas those placed after age 4 were removed after several weeks. The presence of a cleft palate correlated with reduced risk for tracheotomy, but the presence of a ventriculoperitoneal shunt correlated with an increased risk for tracheotomy. Procedures selectively used to improve the airway included midface advancement, mandibular expansion, tonsillectomy and adenoidectomy, uvulopalatopharyngoplasty, anterior tongue reduction, and endoscopic tracheal granuloma excision.
Conclusions:
The likelihood for surgical airway management is related to specific craniofacial diagnosis. The length of tracheal cannulation is greatest for infants and young children who manifest severe airway compromise, often because of nasal obstruction in combination with other anatomic factors. Early tracheotomy is advocated for these patients to promote optimal growth and development. Choanal atresia is often misdiagnosed in these infants; nasal obstruction is actually secondary to midface retrusion. Staged surgical interventions can allow eventual successful decannulation in nearly all cases of craniofacial syndromes.
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