Literature DB >> 16688740

Morphometric alterations of anterior superior temporal cortex in obsessive-compulsive disorder.

Jung-Seok Choi1, Hye-Soo Kim, So Young Yoo, Tae-Hyun Ha, Joon-Hwan Chang, Young Youn Kim, Yong-Wook Shin, Jun Soo Kwon.   

Abstract

The superior temporal gyrus (STG) may be involved in the pathophysiology of obsessive-compulsive disorder (OCD). Moreover, the anterior STG has rich interconnections with the orbitofrontal cortex and the amygdala, and plays a role in visuospatial processing, which is impaired in patients with OCD. This study was designed to examine the morphological abnormalities of the anterior STG and their relationships with visuospatial function and clinical symptom in patients with OCD. We measured gray matter volumes of the anterior STG [rostral STG and planum polare (PP)] by three-dimensional (3D) magnetic resonance imaging in age- and sex-matched groups, which consisted of 22 patients with OCD and 22 normal volunteers. Visuospatial function and clinical symptom were assessed using the Rey-Osterrieth Complex Figure (ROCF) test, the Yale-Brown Obsessive Compulsive Scale, and the Maudsley Obsessive Compulsive Inventory. We found significant volume reductions in bilateral PPs, but there were no significant correlations between brain volumes and the ROCF copy score, immediate or delayed recall score, and clinical symptom in patients with OCD. These results suggest that volume reduction of the anterior STG, especially the PP, may be related to the pathophysiology of OCD, but further research may be needed to explore a relationship of the PP volume change with cognitive impairment observed in patients with OCD. (c) Published 2006 Wiley-Liss, Inc.

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Year:  2006        PMID: 16688740     DOI: 10.1002/da.20171

Source DB:  PubMed          Journal:  Depress Anxiety        ISSN: 1091-4269            Impact factor:   6.505


  10 in total

1.  Basal ganglia MR relaxometry in obsessive-compulsive disorder: T2 depends upon age of symptom onset.

Authors:  Stephen Correia; Emily Hubbard; Jason Hassenstab; Agustin Yip; Josef Vymazal; Vit Herynek; Jay Giedd; Dennis L Murphy; Benjamin D Greenberg
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2.  Structural brain MR imaging changes associated with obsessive-compulsive disorder in patients with multiple sclerosis.

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4.  BOLD response during visual perception of biological motion in obsessive-compulsive disorder : an fMRI study using the dynamic point-light animation paradigm.

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Review 6.  The neural bases of obsessive-compulsive disorder in children and adults.

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7.  The extended fronto-striatal model of obsessive compulsive disorder: convergence from event-related potentials, neuropsychology and neuroimaging.

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Review 8.  Patient-reported outcomes in obsessive-compulsive disorder.

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9.  Multivariate classification of drug-naive obsessive-compulsive disorder patients and healthy controls by applying an SVM to resting-state functional MRI data.

Authors:  Xi Yang; Xinyu Hu; Wanjie Tang; Bin Li; Yanchun Yang; Qiyong Gong; Xiaoqi Huang
Journal:  BMC Psychiatry       Date:  2019-07-05       Impact factor: 3.630

10.  The neural correlates of obsessive-compulsive disorder: a multimodal perspective.

Authors:  P S Moreira; P Marques; C Soriano-Mas; R Magalhães; N Sousa; J M Soares; P Morgado
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  10 in total

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