Skip to main page content
Access keys NCBI Homepage MyNCBI Homepage Main Content Main Navigation
. 2016 Jul;46(9):1971-85.
doi: 10.1017/S0033291716000593. Epub 2016 Apr 6.

Increased MRI-based Cortical Grey/White-Matter Contrast in Sensory and Motor Regions in Schizophrenia and Bipolar Disorder

Affiliations

Increased MRI-based Cortical Grey/White-Matter Contrast in Sensory and Motor Regions in Schizophrenia and Bipolar Disorder

K N Jørgensen et al. Psychol Med. .

Abstract

Background: Schizophrenia and bipolar disorder share genetic risk factors and one possible illness mechanism is abnormal myelination. T1-weighted magnetic resonance imaging (MRI) tissue intensities are sensitive to myelin content. Therefore, the contrast between grey- and white-matter intensities may reflect myelination along the cortical surface.

Method: MRI images were obtained from patients with schizophrenia (n = 214), bipolar disorder (n = 185), and healthy controls (n = 278) and processed in FreeSurfer. The grey/white-matter contrast was computed at each vertex as the difference between average grey-matter intensity (sampled 0-60% into the cortical ribbon) and average white-matter intensity (sampled 0-1.5 mm into subcortical white matter), normalized by their average. Group differences were tested using linear models covarying for age and sex.

Results: Patients with schizophrenia had increased contrast compared to controls bilaterally in the post- and precentral gyri, the transverse temporal gyri and posterior insulae, and in parieto-occipital regions. In bipolar disorder, increased contrast was primarily localized in the left precentral gyrus. There were no significant differences between schizophrenia and bipolar disorder. Findings of increased contrast remained after adjusting for cortical area, thickness, and gyrification. We found no association with antipsychotic medication dose.

Conclusions: Increased contrast was found in highly myelinated low-level sensory and motor regions in schizophrenia, and to a lesser extent in bipolar disorder. We propose that these findings indicate reduced intracortical myelin. In accordance with the corollary discharge hypothesis, this could cause disinhibition of sensory input, resulting in distorted perceptual processing leading to the characteristic positive symptoms of schizophrenia.

Keywords: Bipolar disorder; cerebral cortex; myelin; schizophrenia; tissue contrast.

Similar articles

See all similar articles

Cited by 9 articles

See all "Cited by" articles

Publication types

Feedback