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Published on: August 14, 2019
Susceptibility-weighted MRI in mild traumatic brain injury
Yen-Lin Huang1, Ying-Sheng Kuo1, Ying-Chi Tseng1
1From the Department of Diagnostic Radiology (Y.-L.H., Y.-S.K., Y.-C.T., D.Y.-T.C., C.-J.C.), Taipei Medical University Shuang-Ho Hospital, Taipei; and Graduate Institute of Injury Prevention and Control (W.-T.C.), Taipei Medical University, Taiwan.
Objective:
To compare the frequency of microbleeds identified by susceptibility-weighted MRI (SWMRI) in patients with mild traumatic brain injury (mTBI) and normal controls, and correlate these findings with neuropsychological tests.
Methods:
Research ethics committee approval and patient written informed consents were obtained. One hundred eleven patients with mTBI without parenchymal hemorrhage on CT and conventional MRI received SWMRI as well as a digit span and continuous performance test. One hundred eleven healthy volunteers without history of traumatic brain injury were enrolled as the control group and received conventional MRI with additional SWMRI study. We analyzed the number and location of microbleeds in both groups.
Results:
Twenty-six patients with mTBI and 12 control subjects presented microbleeds on SWMRI (p = 0.0197). Sixty microbleeds were found in 26 patients with mTBI and 15 microbleeds in 12 control subjects. The mTBI group showed notably more microbleeds in the cortex/subcortical region (52 microbleeds, 86.7%, vs 3 microbleeds, 20%; p < 0.0001). Conversely, the control group showed more microbleeds in the central brain (9 microbleeds, 60%, vs 3 microbleeds, 5%; p < 0.0001). There was no statistical difference in number of microbleeds in the cerebellum and brainstem (p = 0.2598 and p = 0.4932, respectively). Patients with mTBI who had detected microbleeds had lower digit span scores than the patients with negative SWMRI findings (p = 0.017).
Conclusion:
Presence of mTBI-related microbleeds showed a neuropsychological defect on short-term memory function, indicating that the presence of microbleeds could be a possible severity biomarker for mTBI. Addition of the SWMRI technique to the MRI protocol for patients with mTBI is recommended.
Insights
Mild traumatic brain injury (mTBI) patients show more brain microbleeds on susceptibility-weighted MRI (SWMRI) compared to controls. These microbleeds correlate with poorer short-term memory, suggesting SWMRI can identify mTBI severity.
Area of Science:
- Neuroimaging
- Neurology
- Radiology
Background:
- Mild traumatic brain injury (mTBI) can cause subtle brain damage not always visible on conventional imaging.
- Susceptibility-weighted MRI (SWMRI) is a sensitive technique for detecting microhemorrhages.
Purpose of the Study:
- To compare the frequency and location of microbleeds in mTBI patients versus healthy controls using SWMRI.
- To investigate the correlation between SWMRI-identified microbleeds and neuropsychological test performance in mTBI patients.
Main Methods:
- SWMRI and neuropsychological tests (digit span, continuous performance test) were performed on 111 mTBI patients and 111 healthy controls.
- Microbleed counts and locations were analyzed and compared between the two groups.
Main Results:
- SWMRI detected microbleeds in 26% of mTBI patients and 11% of controls (p = 0.0197).
- mTBI patients had significantly more cortical/subcortical microbleeds (86.7% vs 20%; p < 0.0001).
- Microbleeds in mTBI patients correlated with lower digit span scores, indicating impaired short-term memory (p = 0.017).
Conclusions:
- SWMRI can identify microbleeds in mTBI patients, particularly in cortical regions.
- The presence of microbleeds in mTBI is associated with neuropsychological deficits, suggesting it may serve as a biomarker for injury severity.
- Incorporating SWMRI into standard MRI protocols for mTBI is recommended.
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