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1.
AJNR Am J Neuroradiol ; 39(7): 1215-1221, 2018 07.
Article in English | MEDLINE | ID: mdl-29880474

ABSTRACT

BACKGROUND AND PURPOSE: Quantitative susceptibility mapping using MR imaging can assess changes in brain tissue structure and composition. This report presents preliminary results demonstrating changes in tissue magnetic susceptibility after sports-related concussion. MATERIALS AND METHODS: Longitudinal quantitative susceptibility mapping metrics were produced from imaging data acquired from cohorts of concussed and control football athletes. One hundred thirty-six quantitative susceptibility mapping datasets were analyzed across 3 separate visits (24 hours after injury, 8 days postinjury, and 6 months postinjury). Longitudinal quantitative susceptibility mapping group analyses were performed on stability-thresholded brain tissue compartments and selected subregions. Clinical concussion metrics were also measured longitudinally in both cohorts and compared with the measured quantitative susceptibility mapping. RESULTS: Statistically significant increases in white matter susceptibility were identified in the concussed athlete group during the acute (24 hour) and subacute (day 8) period. These effects were most prominent at the 8-day visit but recovered and showed no significant difference from controls at the 6-month visit. The subcortical gray matter showed no statistically significant group differences. Observed susceptibility changes after concussion appeared to outlast self-reported clinical recovery metrics at a group level. At an individual subject level, susceptibility increases within the white matter showed statistically significant correlations with return-to-play durations. CONCLUSIONS: The results of this preliminary investigation suggest that sports-related concussion can induce physiologic changes to brain tissue that can be detected using MR imaging-based magnetic susceptibility estimates. In group analyses, the observed tissue changes appear to persist beyond those detected on clinical outcome assessments and were associated with return-to-play duration after sports-related concussion.


Subject(s)
Brain Concussion/diagnostic imaging , Football/injuries , Magnetic Resonance Imaging/methods , Neuroimaging/methods , Adolescent , Athletic Injuries/diagnostic imaging , Athletic Injuries/physiopathology , Brain Concussion/physiopathology , Humans , Image Interpretation, Computer-Assisted/methods , Longitudinal Studies , Male , White Matter/diagnostic imaging , White Matter/injuries , White Matter/physiopathology
2.
Mol Psychiatry ; 23(4): 932-942, 2018 04.
Article in English | MEDLINE | ID: mdl-28461699

ABSTRACT

Despite decades of research, the pathophysiology of bipolar disorder (BD) is still not well understood. Structural brain differences have been associated with BD, but results from neuroimaging studies have been inconsistent. To address this, we performed the largest study to date of cortical gray matter thickness and surface area measures from brain magnetic resonance imaging scans of 6503 individuals including 1837 unrelated adults with BD and 2582 unrelated healthy controls for group differences while also examining the effects of commonly prescribed medications, age of illness onset, history of psychosis, mood state, age and sex differences on cortical regions. In BD, cortical gray matter was thinner in frontal, temporal and parietal regions of both brain hemispheres. BD had the strongest effects on left pars opercularis (Cohen's d=-0.293; P=1.71 × 10-21), left fusiform gyrus (d=-0.288; P=8.25 × 10-21) and left rostral middle frontal cortex (d=-0.276; P=2.99 × 10-19). Longer duration of illness (after accounting for age at the time of scanning) was associated with reduced cortical thickness in frontal, medial parietal and occipital regions. We found that several commonly prescribed medications, including lithium, antiepileptic and antipsychotic treatment showed significant associations with cortical thickness and surface area, even after accounting for patients who received multiple medications. We found evidence of reduced cortical surface area associated with a history of psychosis but no associations with mood state at the time of scanning. Our analysis revealed previously undetected associations and provides an extensive analysis of potential confounding variables in neuroimaging studies of BD.


Subject(s)
Bipolar Disorder/diagnostic imaging , Bipolar Disorder/pathology , Gray Matter/pathology , Adolescent , Adult , Age Factors , Bipolar Disorder/metabolism , Brain/pathology , Case-Control Studies , Cerebral Cortex/physiopathology , Female , Frontal Lobe/pathology , Humans , Magnetic Resonance Imaging/methods , Male , Middle Aged , Neuroimaging , Prefrontal Cortex/pathology , Psychotic Disorders/pathology , Sex Factors , Temporal Lobe/pathology , Young Adult
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