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Traumatic Microbleeds in Mild Traumatic Brain Injury: Stability, Distribution, and Association with Other Injuries
Antti Junkkari1, Antti Korvenoja2, Antti Huovinen1
1Department of Neurology, Clinical Neurosciences, Helsinki University Hospital and University of Helsinki, Helsinki, Finland.
Abstract:
This study aimed to investigate whether the amount of traumatic microbleeds (TMBs) detected on magnetic resonance imaging (MRI) changes in different brain regions after a 3-month follow-up in adult patients with mild traumatic brain injury (mTBI). A 3 T MRI of the brain was conducted at baseline (3-17 days after trauma) and at 3 months after patients were diagnosed with mTBI according to the World Health Organization criteria. The TMBs were evaluated, counted, and assigned locations by a neuroradiologist according to the Common Data Elements for Neuroimaging of Traumatic Brain Injury (CDE-TBI). At baseline, 22 out of 113 (19%) patients had at least one TMB. After initial imaging, 22 patients dropped out, resulting in 88 patients, of whom 21 (24%) had at least one TMB. Across these patients, a total of 129 TMB lesions were detected at baseline, all of which were visible at follow-up imaging. No new TMB lesions that were not detected at baseline were seen at follow-up imaging. The most common CDE-TBI regions for TMBs were the frontal (77/129, 60%), temporal (33/129, 26%), and parietal (8/129, 6%) subcortical white matter. For each patient, the TMB lesions were located in one region in 10% (9/88), two regions in 3% (3/88), three regions in 3% (3/88), and four or more regions in 7% (6/88) of the CDE-TBI regions. Twenty-five out of 88 (28%) patients also had other trauma-related intracranial abnormalities: 10/25 (40%) of which had at least one TMB, which was true only for 17% (11/63) for those without (p < 0.05). In conclusion, initial TMBs can still be reliably found with conventional MRI after 3 months in patients with mTBI: delayed imaging does not necessarily compromise the detection of these lesions. Other radiological abnormalities are linked with higher prevalence of TMBs, possibly suggesting increased injury burden within the mTBI population.
Insights
Traumatic microbleeds (TMBs) in mild traumatic brain injury (mTBI) patients are detectable on MRI scans up to 3 months post-injury. Follow-up imaging confirms initial TMBs, indicating stable lesion detection over time.
Area of Science:
- Neurology
- Radiology
- Neurotrauma
Background:
- Mild traumatic brain injury (mTBI) is a common neurological condition.
- Traumatic microbleeds (TMBs) are indicative of injury severity.
- Longitudinal changes in TMBs after mTBI require further investigation.
Purpose of the Study:
- To assess the detectability and stability of traumatic microbleeds (TMBs) in adult patients with mild traumatic brain injury (mTBI) over a 3-month period.
- To determine if TMBs change in number or location in different brain regions after 3 months.
- To explore the association between TMBs and other intracranial abnormalities in mTBI.
Main Methods:
- Adult patients diagnosed with mTBI underwent 3 Tesla MRI scans at baseline (3-17 days post-trauma) and at 3-month follow-up.
- Traumatic microbleeds (TMBs) were identified, counted, and localized using Common Data Elements for Neuroimaging of Traumatic Brain Injury (CDE-TBI) criteria.
- Statistical analysis was performed to compare baseline and follow-up findings and to assess associations with other injuries.
Main Results:
- At baseline, 19% of 113 patients had TMBs; at 3 months, 24% of 88 patients had TMBs.
- All 129 initially detected TMB lesions remained visible at the 3-month follow-up.
- No new TMB lesions were detected at follow-up.
- The frontal subcortical white matter was the most common location for TMBs (60%).
- Patients with other intracranial abnormalities showed a higher prevalence of TMBs (40% vs. 17%).
Conclusions:
- Initial traumatic microbleeds (TMBs) in mild traumatic brain injury (mTBI) patients are reliably detectable with conventional MRI up to 3 months post-injury.
- Delayed imaging does not compromise the detection of TMBs.
- The presence of other radiological abnormalities may indicate a greater injury burden in mTBI patients.
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