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Factors Predicting Lung Contusions in Critically Ill Trauma Children: A Multivariate Analysis of 330 Cases
Insights
Road traffic accidents, high Pediatric Risk of Mortality (PRISM) scores, hepatic contusions, and pelvic fractures predict lung contusions in pediatric trauma patients. Early consideration aids diagnosis in critically ill children.
Area of Science:
- Pediatric critical care medicine
- Trauma surgery
- Emergency medicine
Background:
- Lung contusion is a significant injury in pediatric trauma patients.
- Identifying predictive factors for lung contusion is crucial for timely diagnosis and management in critically ill children.
Purpose of the Study:
- To identify independent factors that predict the presence of lung contusion in children admitted to a medical-surgical intensive care unit following trauma.
Main Methods:
- A retrospective study was conducted over 8 years, comparing trauma patients under 15 years old with (C+ group) and without (C- group) lung contusions.
- Multivariate analysis was used to determine independent predictors of lung contusion.
Main Results:
- Of 330 patients, 43 (13%) had lung contusions. Predictors included road traffic accidents (OR, 3.2), elevated Pediatric Risk of Mortality (PRISM) score (OR, 1.1), hepatic contusion (OR, 4.8), and pelvic ring fracture (OR, 3.5).
- Intensive care unit mortality was higher in the lung contusion group (OR, 2.5), but this difference was not significant after adjusting for PRISM or Injury Severity Score.
Conclusions:
- Lung contusion is prevalent in critically ill children with chest trauma.
- Clinical suspicion for lung contusion should be raised in pediatric trauma patients with road traffic accidents, high PRISM scores, hepatic contusions, or pelvic ring fractures.
Purpose:
The aim of the study was to identify factors predicting lung contusion in trauma children.
Methods:
Retrospective study conducted for a period of 8 years (January 01, 2005-December 31, 2012) in a medical surgical intensive care unit. All trauma patients younger than 15 years were included. Two groups were compared: those with lung contusions (C+ group) and those without lung contusions (C- group).
Results:
We included 330 patients. The mean (SD) age was 7.6 (4.3) years. Chest injury was diagnosed in 70 patients (21.2%). All our patients needed mechanical ventilation. Lung contusions were diagnosed in 43 patients (13% of all patients and 61.4% of patients with chest trauma). In multivariate analysis, independent factors predicting lung contusion were road traffic accident (odds ratio [OR], 3.2; 95% confidence interval [CI], 1.2-8.6; P = 0.019), increased Pediatric Risk of Mortality (PRISM) score (OR, 1.1; 95% CI, 1.1-1.2; P = 0.017), hepatic contusion (OR, 4.8; 95% CI, 1.3-17.1; P = 0.017), and pelvic ring fracture (OR, 3.5; 95% CI, 1.1-10.5; P = 0.026). Death occurred in 46 patients (13.9%). Intensive care unit mortality was significantly higher in the C+ group (OR, 2.5; 95% CI, 1.2-5.4; P = 0.021). However, mortality was not different between the 2 groups after adjusting for PRISM score (OR, 1.2; 95% CI, 0.5-2.9; P = 0.752) or after adjusting for Injury Severity Score (OR, 0.7; 95% CI, 0.3-2.1; P = 0.565).
Conclusions:
Lung contusion is common in critically ill children with chest trauma. The diagnosis should be considered in patients with road traffic accident, increased PRISM score, hepatic contusion, and pelvic ring fracture.
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