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Risk Factors for Acute-Level Hospital Course in Pediatric Craniofacial Fractures
Sofia Perez-Otero1, Michael F Cassidy, Kerry A Morrison
1Hansjörg Wyss Department of Plastic Surgery, NYU Langone Health, New York, NY.
Insights
This study analyzed over 155,000 pediatric craniofacial fractures, revealing cranial vault fractures are most common. Specific fracture types increase risks for severe outcomes like intensive care unit admission and cervical spine injury.
Area of Science:
- Pediatric Traumatology
- Craniofacial Surgery
- Epidemiology
Background:
- Existing pediatric craniofacial trauma literature is limited by single-institution studies and short observation periods.
- A comprehensive understanding of pediatric craniofacial fracture epidemiology and associated risks is lacking.
Purpose of the Study:
- To analyze a national database over 10 years to delineate the epidemiology of pediatric craniofacial fractures.
- To identify risk factors associated with an acute-level hospital course in pediatric craniofacial fractures.
Main Methods:
- Utilized the National Trauma Data Bank (NTDB) to identify pediatric craniofacial fractures from 2010 to 2019.
- Performed descriptive analyses and multivariable regression to identify risk factors for acute hospital outcomes.
Main Results:
- Reviewed 155,136 pediatric craniofacial fracture cases: cranial vault (49.0%), nasal (22.4%), midface (21.0%), mandibular (20.2%), and orbital floor (13.7%).
- Cranial vault fractures were most common overall but decreased with age, while facial fractures increased with age.
- Cranial vault and midface fractures increased risk for intracranial injury and ICU admission (P<0.001); mandibular and midface fractures increased risk for cervical spine fracture and tracheostomy (P<0.001).
Conclusions:
- This study addresses limitations of prior research by analyzing a large, national cohort over a decade.
- Identifying independent contributions of each fracture type to acute outcomes aids in optimizing risk stratification, counseling, and management for pediatric craniofacial trauma.
Purpose:
The pediatric craniofacial trauma literature is limited to single institutions or short study periods. Herein, this study analyzes a national database over 10 years to delineate the epidemiology of pediatric craniofacial fractures and to identify risk factors for acute-level hospital course in the largest series to date.
Methods:
Utilizing the National Trauma Data Bank, pediatric craniofacial fractures admitted between 2010 and 2019 were identified. Descriptive analyses and multivariable regression were performed to identify risk factors for acute-level hospital course.
Results:
A total of 155,136 pediatric craniofacial fracture cases were reviewed, including cranial vault (49.0%), nasal (22.4%), midface (21.0%), mandibular (20.2%), and orbital floor fractures (13.7%). Midface and orbital floor fractures occurred commonly as multicraniofacial fractures. Cranial vault fractures were the most common among all age groups, but frequency declined with age. In contrast, facial fractures increased with age. Despite the inherent complexity of multicraniofacial trauma, isolated fractures remained a concern for acute-level hospital course.Cranial vault and midface fractures had an increased risk of intracranial injury and intensive care unit admission (P<0.001). Mandibular and midface fractures had an increased risk for cervical spine fracture and tracheostomy (P<0.001). Patient and injury-specific risk factors among the fractures with the strongest association for each outcome-cranial vault and mandible-were identified.
Conclusions:
The inherent limitations of prior studies-geographical biases, small cohorts, and short-term study periods-were addressed. Describing the independent contribution of each craniofacial fracture to the risk of acute-level hospital course outcomes can be employed to better optimize risk stratification, counseling, and management.
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