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Pediatric Pelvic and Acetabular Fractures: Discerning Severity by Classification and Clinical Management
Oduche Igboechi1, Sarah R Purtell2, Patrick Carry2
1Department of Orthopedics, University of Maryland School of Medicine, Baltimore, MD.
Insights
Pediatric pelvic and acetabular fractures are often classified using systems like AO/OTA and Young and Burgess, which predict management needs. Air transport indicates more severe injuries requiring advanced care.
Area of Science:
- Orthopedic Surgery
- Pediatric Trauma
- Radiology
Background:
- Existing classification systems may not fully capture injury patterns in pediatric pelvic ring and acetabular fractures.
- Pediatric patients with these severe injuries often require transfer for specialized care.
- Evaluating common classification systems' correlation with clinical management and transfer patterns in pediatric patients is crucial.
Purpose of the Study:
- To assess the effectiveness of commonly used fracture classification systems in pediatric pelvic ring and acetabular injuries.
- To determine the correlation between injury severity, classification systems, and clinical management, including patient transfer patterns.
- To identify factors associated with operative management and air transport in pediatric trauma patients.
Main Methods:
- Retrospective review of 188 pediatric patients (ages 1-15) treated for pelvic or acetabular fractures over 10 years.
- Analysis of demographic, radiographic, and clinical data.
- Evaluation of injury severity using Arbeitsgemeinschaft für Osteosynthesefragen/Orthopaedic Trauma Association (AO/OTA), Young and Burgess, and Torode/Zieg classifications, and Injury Severity Score (ISS).
Main Results:
- Increasing injury severity (AO/OTA, Young and Burgess, Torode/Zieg, ISS) and lower hemoglobin levels correlated with operative management.
- Air transport was significantly associated with surgical treatment, pediatric intensive care unit (PICU) admission, polytrauma, and Torode/Zieg classification.
- No significant difference in injury characteristics was found between transferred and directly admitted patients.
Conclusions:
- The AO/OTA and Young and Burgess classification systems adequately assess severity and predict management for pediatric pelvic and acetabular fractures, despite limitations.
- The Torode and Zieg classification also predicts management patterns.
- Air transport is utilized for more severe pediatric pelvic injuries, indicating a need for expedited advanced care, with further studies needed for long-term outcomes.
Background:
Existing classification systems may not adequately describe the injury patterns seen pelvic ring and acetabular fractures in the skeletally immature population. Pediatric patients, once stabilized, are often transferred for these injuries. We evaluated which commonly used systems correlate with clinical management in pediatric patients, including transfer patterns based on injury severity.
Methods:
A retrospective review of patients aged 1 to 15 treated for traumatic pelvic or acetabular fractures over a 10-year period at an academic level I Pediatric Trauma Center reviewed demographic, radiographic, and clinical data.
Results:
A total of 188 pediatric patients (average age 10.1 y) were included. Increasing injury severity based on classification Arbeitsgemeinschaft für Osteosynthesefragen/Orthopaedic Trauma Association (AO/OTA P <0.001; Young and Burgess P <0.001; Torode/Zieg P <0.001), increasing Injury Severity Score ( P =0.0017), and decreasing hemoglobin levels ( P =0.0144) were significantly associated with operative management. Injury characteristics did not differ between patients who were transferred versus patients who were brought in directly from the field. Air transport was significantly associated with surgical treatment, pediatric intensive care unit admission, polytrauma, and Torode/Zieg classification ( P =0.036, <0.0001, 0.0297, 0.0003, respectively).
Conclusions:
Although not fully descriptive of skeletally immature fracture patterns, the AO/OTA and Young and Burgess classification systems adequately assess the severity of pelvic rings and injuries in pediatric patients and predict management patterns. The Torode and Zieg classification also predicts management. In a large cohort, air transport was significantly associated with surgical treatment, need for pediatric intensive care unit stay, the presence of an additional injury, and instability in the Torode and Zieg classification. These findings suggest that air transfers are being utilized to expedite advanced-level care in more severe injuries. Further studies with long-term follow-up are required to assess the clinical outcomes of both nonoperatively and operatively treated pediatric pelvic fractures and to guide both triage and treatment decisions for these rare but severe injuries.
Level Of Evidence:
Level III.
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