Dept. of Radiological Sciences, David Geffen School of Medicine, University of California Los Angeles, Los Angeles, CA, United States of America.
Department of Psychology, University of California Los Angeles, Los Angeles, CA, United States of America.
Schizophr Res. 2021 May;231:179-188. doi: 10.1016/j.schres.2021.04.001. Epub 2021 Apr 16.
Schizophrenia (SCZ) is a chronic cognitive and behavioral disorder associated with abnormal cortical activity during information processing. Several brain structures associated with the seven performance domains evaluated using the MATRICS (Measurement and Treatment Research to Improve Cognition in Schizophrenia) Consensus Cognitive Battery (MCCB) have shown cortical volume loss in first episode schizophrenia (FES) patients. However, the relationship between morphological organization and MCCB performance remains unclear. Therefore, in the current observational study, high-resolution structural MRI scans were collected from 50 FES patients, and the morphometric correlation network (MCN) using cortical volume was established to characterize the cortical pattern associated with poorer MCCB performance. We also investigated topological properties, such as the modularity, the degree and the betweenness centrality. Our findings show structural volume was directly and strongly associated with the cognitive deficits of FES patients in the precuneus, anterior cingulate, and fusiform gyrus, as well as the prefrontal, parietal, and sensorimotor cortices. The medial orbitofrontal, fusiform, and superior frontal gyri were not only identified as the predominant nodes with high degree and betweenness centrality in the MCN, but they were also found to be critical in performance in several of the MCCB domains. Together, these results suggest a widespread cortical network is altered in FES patients and that performance on the MCCB domains is associated with the core pathophysiology of SCZ.
精神分裂症 (SCZ) 是一种慢性认知和行为障碍,与信息处理过程中的皮质活动异常有关。使用 MATRICS(用于改善精神分裂症认知的测量和治疗研究)共识认知电池 (MCCB) 评估的七个表现领域相关的几个大脑结构在首发精神分裂症 (FES) 患者中显示出皮质体积损失。然而,形态组织与 MCCB 表现之间的关系尚不清楚。因此,在当前的观察性研究中,从 50 名 FES 患者中收集了高分辨率结构 MRI 扫描,并建立了使用皮质体积的形态计量相关网络 (MCN),以表征与 MCCB 表现较差相关的皮质模式。我们还研究了拓扑性质,例如模块性、度数和介数中心性。我们的研究结果表明,结构体积与 FES 患者在楔前叶、前扣带和梭状回以及前额叶、顶叶和感觉运动皮质的认知缺陷直接且强烈相关。中眶额回、梭状回和额上回不仅被确定为 MCN 中具有高度数和介数中心性的主要节点,而且还被发现对 MCCB 多个领域的表现至关重要。总之,这些结果表明广泛的皮质网络在 FES 患者中发生改变,并且 MCCB 领域的表现与 SCZ 的核心病理生理学相关。