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Trauma

PELVIC FRACTURES IN POLYTRAUMA: WHICH CLASSIFICATION PREDICTS BETTER HEMODYNAMIC INSTABILITY?

European Federation of National Associations of Orthopaedics and Traumatology (EFORT) - 12th Congress



Abstract

Introduction and objectives

High-energy pelvic fractures are life-threatening injuries. Approximately 15% to 30% of patients with high-energy pelvic injuries are hemodynamic unstable, hemorrhagic shock remains the main cause of death in patients with pelvic fractures, with an overall mortality rate from 6% to 35%. The correlation between fracture pattern and mortality in polytrauma with pelvic fracture has been previously investigated. However, the purpose of our investigation was to evaluate the relationship of hemodynamic instability with the pelvic fracture pattern according to different classifications.

Materials and Methods

A retrospective study of high-energy pelvic fractures was performed for consecutive patients admitted to the emergency Level I trauma center in the polytrauma unit of our institution from June 2007 to June 2010. A total of 759 patients polytrauma were attended, whom 100 had a pelvic fracture and were included in our study. Demographic data, mechanism of injury and associated injuries were recorded. The patients were classified as hemodynamic stable or unstable according to the ATLS protocol. The pelvic fracture patterns were divided into stable and unstable according to Young-Burgess and Tile classifications. Statistical analysis was performed to determine the relationship between fracture pattern and hemodynamic stability. Secondary outcomes were obtained: the relationship with TCE and pulmonary injury, usefulness of the external fixation, relationship between fracture pattern and embolization requests. Chi-square test was used for the analysis and OR test.

Results

Male was the gender most frequent (70%), the average age was 45.2 years and the mortality rate was 24%, the main mechanism of injury was motor vehicle injury (41%). Pelvic fracture pattern (neither Tile classification nor Young-Burgess classification) showed no correlation with hemodynamic situation (p>0.05). Neither death could not be predicted on the basis of pelvic fracture pattern (p>0.05). We found statistical association between patients affected by pelvic fracture in polytrauma and head injury, and death (p<0.01).

Conclusion

Pelvic fracture pattern is not useful to predict hemodynamic instability in polytrauma, regardless the classification system used. Pelvic fracture is not significantly associated with high risk of mortality; however it contributes to increase mortality risk in cases of head injury associated.