脾
认知
白质
心理学
精神分裂症(面向对象编程)
混淆
部分各向异性
精神病
睡眠剥夺对认知功能的影响
听力学
内科学
精神科
医学
磁共振成像
放射科
作者
Sanja Kilian,Stefan S. du Plessis,Jean‐Paul Fouché,Hilmar Luckhoff,Freda Scheffler,Lebogang Phahladira,Chanellé Buckle,Retha Smit,Riaan Olivier,Leslie Swartz,Robin Emsley,Laila Asmal
标识
DOI:10.1016/j.schres.2022.11.017
摘要
Both cognitive impairment and alterations in white matter tissue microstructure are well recognised in schizophrenia. We investigated whether differences in white matter microstructure underpin cognitive impairments in patients with first-episode schizophrenia spectrum disorders when controlling for multiple confounding factors.We employed a cross-sectional study design and compared fractional anisotropy (FA) between individuals diagnosed with first- episode schizophrenia spectrum disorders (FES) (n = 68) and matched healthy controls (n = 120). We conducted multiple analyses of covariance (ANCOVAs) to compare the mean FA values for patients and controls across 27 white matter tracts. We conducted exploratory correlation analyses to determine if white matter tract differences were associated with global cognitive impairment as well as deficits across seven cognitive domains.We found widespread reductions in FA in patients compared to controls, after controlling for confounding variables, such as age, biological sex, education, substances, and childhood adversities. We found a significant positive correlation between the attention/vigilance domain and the splenium of the corpus collosum and external capsule after correction for multiple comparisons. In the control group we found no significant correlations between FA and cognition.Our findings provide a neurobiological basis for attentional cognitive deficits in schizophrenia, highlighting a potential role for the splenium of the corpus collosum and external capsule.
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