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Published on: June 30, 2015
Age and Mortality in Pediatric Severe Traumatic Brain Injury: Results from an International Study
Ajit Sarnaik1, Nikki Miller Ferguson2, A M Iqbal O'Meara2
1Departments of Pediatrics, Wayne State University, Detroit, MI, USA.
Insights
This study found no difference in mortality rates for children with severe traumatic brain injury (TBI) across different age groups. Novel associations between age and injury markers were identified, excluding abusive head trauma.
Area of Science:
- Pediatric critical care medicine
- Neurotrauma research
- Child neurology
Background:
- Previous studies suggest younger age correlates with poorer outcomes in severe traumatic brain injury (TBI).
- Confounding factors and biases have limited a clear understanding of age-related TBI outcomes.
- This study investigates the association between age and mortality in pediatric severe TBI.
Purpose of the Study:
- To determine if age is associated with mortality in children experiencing severe TBI.
- To explore potential differences in injury characteristics and outcomes across pediatric age strata.
- To identify novel associations between age and injury markers in severe TBI, excluding abusive head trauma.
Main Methods:
- Analysis of 200 subjects from the Approaches and Decisions for Acute Pediatric TBI trial (severe TBI, Glasgow Coma Scale ≤ 8).
- Exclusion of children with suspected abusive head trauma (AHT) to prevent bias.
- Stratification by age (<5, 5-11, 11-18 years), with statistical comparisons using ANOVA, Chi-square, and Cox regression models.
Main Results:
- In the cohort of 155 children, overall mortality was similar across age strata (14.0%, 20.0%, 20.9%; p=0.58).
- Motor vehicle accidents were the most common injury mechanism; falls were more frequent in the youngest group.
- Younger children showed increased hypothermia and coagulopathies, while older children had lower platelet counts.
Conclusions:
- This study did not find significant differences in mortality rates across age groups for severe TBI in children.
- Novel associations between age and specific injury markers (excluding AHT) were identified.
- These findings may inform future research into age-specific TBI pathophysiology and treatment.
Background:
Although small series have suggested that younger age is associated with less favorable outcome after severe traumatic brain injury (TBI), confounders and biases have limited our understanding of this relationship. We hypothesized that there would be an association between age and mortality in children within an ongoing observational, cohort study.
Methods:
The first 200 subjects from the Approaches and Decisions for Acute Pediatric TBI trial were eligible for this analysis (inclusion criteria: severe TBI (Glasgow Coma Scale [GCS] score ≤ 8], age 18 years, and intracranial pressure (ICP) monitor placed; exclusion: pregnancy). Children with suspected abusive head trauma (AHT) were excluded to avoid bias related to the association between AHT and mortality. Demographics, and prehospital and resuscitation events were collected/analyzed, and children were stratified based on age at time of injury (< 5, 5-< 11, 11-18 years) and presented as mean ± standard error of the mean (SEM). Analyses of variance were used to test the equality of the means across the group for continuous variable, and Chi-square tests were used to compare percentages for discrete variables (post hoc comparisons were made using t test and Bonferroni corrections, as needed). Kaplan-Meier curves were generated for each age subgroup describing the time of death, and log-rank was used to compare the curves. Cox proportional hazards regression models were used to assess the effect of age on time to death while controlling for covariates.
Results:
In the final cohort (n = 155, 45 excluded for AHT), overall age was 9.2 years ± 0.4 and GCS was 5.3 ± 0.1. Mortality was similar between strata (14.0, 20.0, 20.9%, respectively, p = 0.58). Motor vehicle accidents were the most common mechanism across all strata, while falls tended to be more common in the youngest stratum (p = 0.08). The youngest stratum demonstrated increased incidence of spontaneous hypothermia at presentation and decreased hemoglobin concentrations and coagulopathies, while the oldest demonstrated lower platelet counts.
Conclusions:
In contrast to previous reports, we failed to detect mortality differences across age strata in children with severe TBI. We have discerned novel associations between age and various markers of injury-unrelated to AHT-that may lead to testable hypotheses in the future.
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