scholarly journals Polygenic Risk and White Matter Integrity in Individuals at High Risk of Mood Disorder

2013 ◽  
Vol 74 (4) ◽  
pp. 280-286 ◽  
Author(s):  
Heather C. Whalley ◽  
Emma Sprooten ◽  
Suzanna Hackett ◽  
Lynsey Hall ◽  
Douglas H. Blackwood ◽  
...  
2017 ◽  
Vol 71 (8) ◽  
pp. 530-541 ◽  
Author(s):  
Junichi Saito ◽  
Masaaki Hori ◽  
Takahiro Nemoto ◽  
Naoyuki Katagiri ◽  
Keigo Shimoji ◽  
...  

2022 ◽  
pp. 1-10
Author(s):  
Wenjun Su ◽  
Aihua Yuan ◽  
Yingying Tang ◽  
Lihua Xu ◽  
Yanyan Wei ◽  
...  

Abstract Background Schizophrenia is a severely debilitating psychiatric disorder with high heritability and polygenic architecture. A higher polygenic risk score for schizophrenia (SzPRS) has been associated with smaller gray matter volume, lower activation, and decreased functional connectivity (FC). However, the effect of polygenic inheritance on the brain white matter microstructure has only been sparsely reported. Methods Eighty-four patients with first-episode schizophrenia (FES) patients and ninety-three healthy controls (HC) with genetics, diffusion tensor imaging (DTI), and resting-state functional magnetic resonance imaging (rs-fMRI) data were included in our study. We investigated impaired white matter integrity as measured by fractional anisotropy (FA) in the FES group, further examined the effect of SzPRS on white matter FA and FC in the regions connected by SzPRS-related white matter tracts. Results Decreased FA was observed in FES in many commonly identified regions. Among these regions, we observed that in the FES group, but not the HC group, SzPRS was negatively associated with the mean FA in the genu and body of corpus callosum, right anterior corona radiata, and right superior corona radiata. Higher SzPRS was also associated with lower FCs between the left inferior frontal gyrus (IFG)–left inferior temporal gyrus (ITG), right IFG–left ITG, right IFG–left middle frontal gyrus (MFG), and right IFG–right MFG in the FES group. Conclusion Higher polygenic risks are linked with disrupted white matter integrity and FC in patients with schizophrenia. These correlations are strongly driven by the interhemispheric callosal fibers and the connections between frontotemporal regions.


2016 ◽  
Vol 16 (1) ◽  
Author(s):  
Nandita Vijayakumar ◽  
Cali Bartholomeusz ◽  
Thomas Whitford ◽  
Daniel F. Hermens ◽  
Barnaby Nelson ◽  
...  

2020 ◽  
Vol 46 (Supplement_1) ◽  
pp. S249-S250
Author(s):  
Seda Arslan ◽  
Tuba Şahin ◽  
Didenur Şahin ◽  
Timothea Toulopoulou

Abstract Background Psychotic disorders are characterized by neurobiological deviations, including in the macro and microstructure of white matter. White matter alterations are also seen in psychosis-proneness and in individuals who have a high risk of psychosis. For example, studies have indicated decreases in white matter integrity in the genu/forceps minor of corpus callosum (CC) in the latter populations. Anterior corona radiata (ACR) is one crucial white-matter tract connecting the anterior cingulate cortex to the striatum. Indeed, reductions in the white matter structure of anterior genu of CC significantly predict the transition from ultra-high risk to psychosis. However, there is a gap in the literature related to observing the psychosis-proneness by applying both micro and macrostructural brain analyses, and most of the microstructural white matter studies in psychosis focus on fractional anisotropy (FA) and not include mean diffusivity (MD). Thus, the current study aims to assess whether white matter deviations in CG, ACR, and CC, are associated with psychosis proneness by combining both tract-based spatial statistics (TBSS) and voxel-based morphometry (VBM) analyses in a sample of participants with psychosis proneness (PP) and without psychosis proneness (NPP). Methods The study included 53 participants (29 PP vs. 24 NPP) whose ages were between 17 and 24 years. Participants were split into two groups based on their scores on Structured Interview for Schizotypy assessment, a well-validated instrument of psychosis proneness. White matter integrity was analyzed via diffusion tensor imaging (DTI) and white matter volume (WMV) via VBM. Two sample t-test was used in GLM for both DTI and VBM analyses. FA, MD, and VMV were compared between two groups to observe micro and macro white matter structure alterations in the region of interest. Results DTI analysis revealed decreased FA values in the right ACR and right genu of the CC in the psychosis-proneness group (F(1,52)= 7.37, p= 0.009). Moreover, VBM showed a significant WMV decreases in the right CG, Brodmann areas 8, 9, and 32 in the PP group (F(1,52)= 50.85, uncorrected p<0.01). However, MD did not differ between the two groups (F(1,51)= 3.65, p=0.06) Discussion These findings suggest that PP associated with decreased white matter integrity in ACR, genu of CC, and also reduced white matter volumes in the right CG, Brodmann areas 8, 9, and 32. Significant FA decreases might result from alterations in radial or axial diffusivity since we did not observe significant MD differences between two groups. The current findings suggested that participants with PP had both macro and micro white matter structure disruptions, mostly in frontal parts of the right cerebrum, compared to no PP group.


NeuroImage ◽  
2010 ◽  
Vol 52 (4) ◽  
pp. 1487-1494 ◽  
Author(s):  
Brian T. Gold ◽  
David K. Powell ◽  
Anders H. Andersen ◽  
Charles D. Smith

2020 ◽  
Author(s):  
Xingxing Zhu ◽  
Joey Ward ◽  
Breda Cullen ◽  
Donald M. Lyall ◽  
Rona J. Strawbridge ◽  
...  

AbstractBackgroundAnhedonia is a core symptom of multiple psychiatric disorders and has been associated with changes in brain structure. Genome-wide association studies suggest that anhedonia is heritable with a polygenic architecture but few studies have explored the association between genetic loading for anhedonia - indexed by polygenic risk scores for anhedonia (PRS-anhedonia) - and structural brain imaging phenotypes. We investigated how anhedonia and polygenic risk for anhedonia were associated with brain structure within the UK Biobank cohort.MethodsBrain measures (including total grey/white matter volumes, subcortical volumes, cortical thickness and white matter integrity) were analysed in relation to the self-reported anhedonia phenotype and PRS-anhedonia for 17,492 participants (8,506 males and 8,986 females; mean age = 62.81 years, SD = 7.43), using linear mixed models and including mediation analyses.ResultsState anhedonia was significantly associated with smaller total grey matter volume (GMV), smaller volumes in thalamus and nucleus accumbens; as well as reduced cortical thickness within the paracentral gyrus, the opercular part of inferior frontal gyrus and the rostral anterior cingulate cortex. PRS-anhedonia was associated with reduced total GMV, increased total white matter volume and reduced white matter integrity; in addition to reduced cortical thickness within the parahippocampal cortex, the superior temporal gyrus and the insula cortex.ConclusionsBoth the state anhedonia phenotype and PRS-anhedonia were associated with differences in multiple brain structures/areas, including within reward-related circuits. These differences may represent vulnerability markers for psychopathology across a range of psychiatric disorders.


2009 ◽  
Vol 66 (6) ◽  
pp. 562-569 ◽  
Author(s):  
Katherine H. Karlsgodt ◽  
Tara A. Niendam ◽  
Carrie E. Bearden ◽  
Tyrone D. Cannon

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