Kimel Family Translational Imaging Genetics Laboratory, Centre for Addiction and Mental Health, Research Imaging Centre Toronto, ON, Canada ; Department of Psychiatry, University of Toronto Toronto, ON, Canada.
Front Hum Neurosci. 2014 Aug 25;8:653. doi: 10.3389/fnhum.2014.00653. eCollection 2014.
In patients with schizophrenia neuroimaging studies have revealed global differences with some brain regions showing focal abnormalities. Examining neurocircuitry, diffusion-weighted imaging studies have identified altered structural integrity of white matter in frontal and temporal brain regions and tracts such as the cingulum bundles, uncinate fasciculi, internal capsules and corpus callosum associated with the illness. Furthermore, structural co-variance analyses have revealed altered structural relationships among regional morphology in the thalamus, frontal, temporal and parietal cortices in schizophrenia patients. The distributed nature of these abnormalities in schizophrenia suggests that multiple brain circuits are impaired, a neural feature that may be better addressed with network level analyses. However, even with the advent of these newer analyses, a large amount of variability in findings remains, likely partially due to the considerable heterogeneity present in this disorder.
在精神分裂症患者中,神经影像学研究显示出全局差异,一些大脑区域存在局灶性异常。在检查神经回路时,扩散加权成像研究已经确定了与疾病相关的额颞叶脑区和束状结构(如扣带束、钩束、内囊和胼胝体)的白质结构完整性发生改变。此外,结构协方差分析揭示了精神分裂症患者丘脑、额、颞和顶叶皮质之间区域形态的结构关系发生改变。精神分裂症中这些异常的分布性质表明多个大脑回路受损,这一神经特征可能通过网络水平分析更好地得到解决。然而,即使有了这些新的分析方法,研究结果的变异性仍然很大,这可能部分是由于该疾病存在很大的异质性。