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Updated: Jan 5, 2026

Systems Analysis of the Neuroinflammatory and Hemodynamic Response to Traumatic Brain Injury
Published on: May 27, 2022
Traumatic microbleeds suggest vascular injury and predict disability in traumatic brain injury
Allison D Griffin1,2, L Christine Turtzo2, Gunjan Y Parikh3,4
1Center for Neuroscience and Regenerative Medicine, Bethesda, Maryland, USA.
Abstract:
Traumatic microbleeds are small foci of hypointensity seen on T2*-weighted MRI in patients following head trauma that have previously been considered a marker of axonal injury. The linear appearance and location of some traumatic microbleeds suggests a vascular origin. The aims of this study were to: (i) identify and characterize traumatic microbleeds in patients with acute traumatic brain injury; (ii) determine whether appearance of traumatic microbleeds predict clinical outcome; and (iii) describe the pathology underlying traumatic microbleeds in an index patient. Patients presenting to the emergency department following acute head trauma who received a head CT were enrolled within 48 h of injury and received a research MRI. Disability was defined using Glasgow Outcome Scale-Extended ≤6 at follow-up. All magnetic resonance images were interpreted prospectively and were used for subsequent analysis of traumatic microbleeds. Lesions on T2* MRI were stratified based on 'linear' streak-like or 'punctate' petechial-appearing traumatic microbleeds. The brain of an enrolled subject imaged acutely was procured following death for evaluation of traumatic microbleeds using MRI targeted pathology methods. Of the 439 patients enrolled over 78 months, 31% (134/439) had evidence of punctate and/or linear traumatic microbleeds on MRI. Severity of injury, mechanism of injury, and CT findings were associated with traumatic microbleeds on MRI. The presence of traumatic microbleeds was an independent predictor of disability (P < 0.05; odds ratio = 2.5). No differences were found between patients with punctate versus linear appearing microbleeds. Post-mortem imaging and histology revealed traumatic microbleed co-localization with iron-laden macrophages, predominately seen in perivascular space. Evidence of axonal injury was not observed in co-localized histopathological sections. Traumatic microbleeds were prevalent in the population studied and predictive of worse outcome. The source of traumatic microbleed signal on MRI appeared to be iron-laden macrophages in the perivascular space tracking a network of injured vessels. While axonal injury in association with traumatic microbleeds cannot be excluded, recognizing traumatic microbleeds as a form of traumatic vascular injury may aid in identifying patients who could benefit from new therapies targeting the injured vasculature and secondary injury to parenchyma.
Insights
Traumatic microbleeds, identified via MRI, are common after head injuries and predict worse clinical outcomes. These bleeds originate from injured blood vessels, not axonal damage, suggesting new therapeutic targets.
Area of Science:
- Neuroimaging
- Neuropathology
- Traumatic Brain Injury
Background:
- Traumatic microbleeds (TMBs) on T2*-weighted MRI are often linked to axonal injury after head trauma.
- The vascular origin of some TMBs suggests alternative underlying pathology.
- This study aimed to characterize TMBs, assess their predictive value for clinical outcomes, and elucidate their pathology.
Observation:
- 31% of 439 acute head trauma patients exhibited punctate or linear TMBs on MRI.
- TMB presence was associated with injury severity, mechanism, and CT findings.
- No difference in outcome was observed between punctate and linear TMBs.
Findings:
- Traumatic microbleeds independently predicted disability (OR=2.5, P<0.05).
- Post-mortem analysis revealed TMBs co-localized with iron-laden macrophages in perivascular spaces.
- Axonal injury was not observed in direct association with TMBs in histopathology.
Implications:
- Traumatic microbleeds are prevalent and indicate poorer outcomes in traumatic brain injury.
- TMBs appear to represent vascular injury rather than solely axonal damage.
- Identifying TMBs as vascular injury may guide therapies targeting injured vasculature and secondary brain damage.

