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Updated: May 13, 2026

Controlled Cortical Impact Model for Traumatic Brain Injury
Published on: August 5, 2014
Severe Traumatic Brain Injuries and Associated Outcomes at a Level 1 Trauma Center
Bharti Sharma1,2, Tirth Patel1,2, Hasan Al-Ali3
1Department of Surgery, NYC Health and Hospitals, Elmhurst, NY 11373, USA.
Insights
Severe traumatic brain injury (TBI) outcomes depend on injury type, physiology, and socioeconomic factors. Understanding these elements is crucial for improving patient prognosis and trauma care preparedness.
Area of Science:
- Neuroscience
- Trauma Surgery
- Public Health
Background:
- Severe traumatic brain injury (TBI) is a major cause of death and disability.
- High-acuity trauma centers manage many TBI cases.
- Factors influencing TBI outcomes require further investigation.
Purpose of the Study:
- To evaluate clinical, physiologic, and socioeconomic factors impacting severe TBI outcomes.
- To analyze data from a single urban Level 1 trauma center.
Main Methods:
- Retrospective study of 1130 severe TBI patients (AIS Head ≥3) from 2020-2023.
- Analysis of demographic data, injury characteristics, vital signs, and insurance status.
- Statistical analysis of factors associated with mortality and morbidity.
Main Results:
- Blunt trauma (97.8%) had 13.8% mortality; penetrating trauma (2.2%) had 48% mortality.
- Lower systolic blood pressure, oxygen saturation, and GCS scores correlated with mortality.
- Self-pay patients had the highest mortality (40%); intoxication showed no significant difference.
Conclusions:
- Injury mechanisms, physiological status, and socioeconomic factors significantly influence severe TBI outcomes.
- Findings highlight the need for better prognostic tools for TBI.
- Improved trauma system preparedness is essential for at-risk TBI patients.
Abstract:
Background: Severe traumatic brain injury (TBI) remains a leading cause of mortality and long-term morbidity, particularly in high-acuity trauma settings. We aim to evaluate the clinical, physiologic, and socioeconomic factors associated with outcomes in patients with severe traumatic brain injury (TBI) at a single urban Level 1 trauma center. Method: This is a single-center, retrospective study of patients presenting with severe TBI between 1 January 2020 and 31 December 2023 at Elmhurst Hospital Center in Queens, New York. Patients were identified using ICD trauma codes and an Abbreviated Injury Severity (AIS) Head score of ≥3. Demographic data, injury characteristics, vital signs, airway interventions, alcohol level, and insurance status were analyzed. Result: A total of 1130 patients met the inclusion criteria. The cohort was predominantly male (76.1%) with a mean age of 52.7 years. Blunt trauma accounted for 97.8% of cases, with a mortality rate of 13.8%, while penetrating trauma comprised 2.2%, with a markedly higher mortality rate of 48%. Patients who died as full code had lower mean systolic blood pressure (82.5 mmHg), oxygen saturation (63%), and shorter emergency department stays (~3.7 h). The mean Glasgow Coma Scale (GCS) score was 12.6, dropping to 6.0 in patients who died. Moreover, higher AIS Head and Injury Severity Score (ISS) values were correlated with worse outcomes. Severely intoxicated patients had higher TBI incidence, with no clear difference observed when compared to normal BAC levels. Self-pay patients exhibited the highest mortality (40%). All associations were statistically significant (p < 0.0001). Conclusions: Severe TBI outcomes are significantly influenced by injury mechanisms, physiologic parameters, and socioeconomic status. These findings emphasize the need for targeted prognostic tools and improved trauma system preparedness for TBI patients at risk of poor outcomes.
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