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Updated: Aug 10, 2026

A Preclinical Controlled Cortical Impact Model for Traumatic Hemorrhage Contusion and Neuroinflammation
Published on: June 10, 2020
Cytotoxic Edema Associated with Hemorrhage Predicts Poor Outcome after Traumatic Brain Injury
L Christine Turtzo1, Marie Luby1, Neekita Jikaria2
1National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland, USA.
Abstract:
Magnetic resonance imaging (MRI) is used rarely in the acute evaluation of traumatic brain injury (TBI) but may identify findings of clinical importance not detected by computed tomography (CT). We aimed to characterize the association of cytotoxic edema and hemorrhage, including traumatic microbleeds, on MRI obtained within hours of acute head trauma and investigated the relationship to clinical outcomes. Patients prospectively enrolled in the Traumatic Head Injury Neuroimaging Classification study (NCT01132937) with evidence of diffusion-related findings or hemorrhage on neuroimaging were included. Blinded interpretation of MRI for diffusion-weighted lesions and hemorrhage was conducted, with subsequent quantification of apparent diffusion coefficient (ADC) values. Of 161 who met criteria, 82 patients had conspicuous hyperintense lesions on diffusion-weighted imaging (DWI) with corresponding regions of hypointense ADC in proximity to hemorrhage. Median time from injury to MRI was 21 (10-30) h. Median ADC values per patient grouped by time from injury to MRI were lowest within 24 h after injury. The ADC values associated with hemorrhagic lesions are lowest early after injury, with an increase in diffusion during the subacute period, suggesting transformation from cytotoxic to vasogenic edema during the subacute post-injury period. Of 118 patients with outcome data, 60 had Glasgow Outcome Scale Extended scores ≤6 at 30/90 days post-injury. Cytotoxic edema on MRI (odds ratio [OR] 2.91 [1.32-6.37], p = 0.008) and TBI severity (OR 2.51 [1.32-4.74], p = 0.005) were independent predictors of outcome. These findings suggest that in patients with TBI who had findings of hemorrhage on CT, patients with DWI/ADC lesions on MRI are more likely to do worse.
Insights
Magnetic resonance imaging (MRI) detects cytotoxic edema in traumatic brain injury (TBI) patients, identifying those with worse outcomes. Early MRI findings correlate with poorer clinical outcomes following head trauma.
Area of Science:
- Neuroimaging
- Neurology
- Radiology
Background:
- Computed tomography (CT) is standard for acute traumatic brain injury (TBI) evaluation.
- Magnetic resonance imaging (MRI) is underutilized but can reveal critical findings.
- Cytotoxic edema and microhemorrhages are important TBI indicators.
Purpose of the Study:
- To assess the association of early MRI findings (cytotoxic edema, hemorrhage) with TBI outcomes.
- To investigate the temporal evolution of edema in TBI.
- To determine if MRI findings predict clinical outcomes.
Main Methods:
- Prospective enrollment in the Traumatic Head Injury Neuroimaging Classification study.
- Blinded MRI interpretation for diffusion-weighted lesions and hemorrhage.
- Quantification of apparent diffusion coefficient (ADC) values.
- Correlation of imaging findings with Glasgow Outcome Scale Extended (GOSE) scores.
Main Results:
- 82/161 patients showed diffusion-weighted imaging (DWI) lesions with hypointense ADC near hemorrhage.
- Lowest ADC values were observed within 24 hours post-injury, indicating cytotoxic edema.
- Cytotoxic edema on MRI (OR 2.91) and TBI severity (OR 2.51) independently predicted poor outcomes (GOSE ≤6).
Conclusions:
- Early MRI, particularly DWI/ADC lesions, identifies cytotoxic edema in TBI.
- Edema characteristics evolve from cytotoxic to vasogenic in the subacute phase.
- Early cytotoxic edema on MRI is a significant predictor of worse clinical outcomes in TBI patients with hemorrhage.
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