4.5 Article

Thalamo-cortical functional connectivity in schizophrenia and bipolar disorder

期刊

BRAIN IMAGING AND BEHAVIOR
卷 12, 期 3, 页码 640-652

出版社

SPRINGER
DOI: 10.1007/s11682-017-9714-y

关键词

Thalamus; Functional connectivity; Imaging; Resting-state; Psychosis

资金

  1. Research Council of Norway [204966/F20, 223273, 213837]
  2. South-Eastern Norway Regional Health Authority [2015-073, 2012-047, 2013-123]
  3. European Community's 7th Framework Programme [602450]
  4. Kristian Gerhard Jebsen Foundation

向作者/读者索取更多资源

The thalamus is a highly connected subcortical structure that relays and integrates sensory and cortical information, which is critical for coherent and accurate perceptual awareness and cognition. Thalamic dysfunction is a classical finding in schizophrenia (SZ), and resting-state functional MRI has implicated somatomotor and frontal lobe thalamic dysconnectivity. However, it remains unclear whether these findings generalize to different psychotic disorders, are confined to specific thalamic sub-regions, and how they relate to structural thalamic alterations. Within-thalamic and thalamo-cortical functional connectivity was assessed using resting-state functional MRI data obtained from patients with SZ (n = 96), bipolar disorder (BD, n = 57), and healthy controls (HC, n = 280). Further, we used thalamic sub-regions as seeds to investigate specific cortical connectivity patterns, and performed structural analyses of thalamic volume and shape. Results showed reduced within-thalamic connectivity and thalamo-frontoparietal coupling in SZ and increased thalamo-somatomotor connectivity in BD. One thalamic sub-region showed increased sensory connectivity in SZ and eight sub-regions showed reductions with frontal and posterior areas. Reduced gray matter and shape abnormalities were found in frontal-projecting regions in both SZ and BD, but did not seem to explain reduced functional connectivity. Aberrant thalamo-cortical connectivity patterns in SZ and BD supports the notion of the thalamus as a key structure in the functional connectome across the psychosis spectrum, and the frontal and somatomotor anatomical distribution is in line with the characteristic cognitive and perceptual symptoms in psychotic disorders.

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