7T MRI Versus 3T MRI of the Brain in Professional Fighters and Patients With Head Trauma
Jonathan K Lee1, Charles Bernick2, Steve Stephen3
1Imaging Institute, Cleveland Clinic, Cleveland, Ohio, USA.
Abstract:
Many studies have investigated the imaging sequelae of repetitive head trauma with mixed results, particularly with regard to the detection of intracranial white matter changes (WMCs) and cerebral microhemorrhages (CMHs) on ≤3 Tesla (T) field magnetic resonance imaging (MRI). 7T MRI, which has recently been approved for clinical use, is more sensitive at detecting lesions associated with multiple neurological diagnoses. In this study, we sought to determine whether 7T MRI would detect more WMCs and CMHs than 3T MRI in 19 professional fighters, 16 patients with single TBI, versus 82 normal healthy controls (NHCs). Fighters and patients with TBI underwent both 3T and 7T MRI; NHCs underwent either 3T (n = 61) or 7T (n = 21) MRI. Readers agreed on the presence/absence of WMCs in 88% (84 of 95) of 3T MRI studies (Cohen's kappa, 0.76) and in 93% (51 of 55) of 7T MRI studies (Cohen's kappa, 0.79). Readers agreed on the presence/absence of CMHs in 96% (91 of 95) of 3T MRI studies (Cohen's kappa, 0.76) and in 96% (54 of 56) of 7T MRI studies (Cohen's kappa, 0.88). The number of WMCs detected was greater in fighters and patients with TBI than NHCs at both 3T and 7T. Moreover, the number of WMCs was greater at 7T than at 3T for fighters, patients with TBI, and NHCs. There was no difference in the number of CMHs detected with 7T MRI versus 3T MRI or in the number of CMHs observed in fighters/patients with TBI versus NHCs. These initial findings suggest that fighters and patients with TBI may have more WMCs than NHCs and that the improved voxel size and signal-to-noise ratio at 7T may help to detect these changes. As 7T MRI becomes more prevalent clinically, larger patient populations should be studied to determine the cause of these WMCs.
Insights
Seven Tesla (7T) MRI detects more white matter changes (WMCs) than 3 Tesla (3T) MRI in professional fighters and patients with traumatic brain injury (TBI). This advanced imaging may improve detection of neurological changes after head trauma.
Area of Science:
- Neurology
- Radiology
- Neuroimaging
Background:
- Repetitive head trauma and traumatic brain injury (TBI) can lead to white matter changes (WMCs) and cerebral microhemorrhages (CMHs).
- Detection of these changes using standard magnetic resonance imaging (MRI) at 3 Tesla (3T) has yielded mixed results.
- Higher field strength MRI, such as 7 Tesla (7T), offers increased sensitivity for detecting subtle lesions.
Purpose of the Study:
- To compare the efficacy of 7T MRI versus 3T MRI in detecting WMCs and CMHs.
- To investigate WMCs and CMHs in professional fighters and patients with single TBI compared to healthy controls.
Main Methods:
- 19 professional fighters, 16 patients with single TBI, and 82 normal healthy controls (NHCs) were included.
- Fighters and TBI patients underwent both 3T and 7T MRI scans.
- NHCs underwent either 3T or 7T MRI.
Main Results:
- Agreement on WMC detection was high for both 3T (88%) and 7T (93%) MRI.
- Agreement on CMH detection was high for both 3T (96%) and 7T (96%) MRI.
- Significantly more WMCs were detected at 7T MRI compared to 3T MRI across all participant groups. No significant difference in CMH detection between 7T and 3T MRI was observed.
Conclusions:
- Professional fighters and patients with TBI may exhibit more WMCs than normal healthy controls.
- 7T MRI demonstrates superior sensitivity in detecting WMCs compared to 3T MRI, likely due to its improved resolution and signal-to-noise ratio.
- Further research with larger cohorts is warranted to elucidate the causes of WMCs detected by 7T MRI.
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