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Abnormal cortical growth in schizophrenia targets normative modules of synchronized development

机译:精神分裂症的皮质异常生长以同步发展的规范模块为目标

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Background Schizophrenia is a disorder of brain connectivity and altered neurodevelopmental processes. Cross-sectional case-control studies in different age groups have suggested that deficits in cortical thickness in childhood-onset schizophrenia may normalize over time, suggesting a disorder-related difference in cortical growth trajectories. Methods We acquired magnetic resonance imaging scans repeated over several years for each subject, in a sample of 106 patients with childhood-onset schizophrenia and 102 age-matched healthy volunteers. Using semiparametric regression, we modeled the effect of schizophrenia on the growth curve of cortical thickness in ~80,000 locations across the cortex, in the age range 8 to 30 years. In addition, we derived normative developmental modules composed of cortical regions with similar maturational trajectories for cortical thickness in typical brain development. Results We found abnormal nonlinear growth processes in prefrontal and temporal areas that have previously been implicated in schizophrenia, distinguishing for the first time between cortical areas with age-constant deficits in cortical thickness and areas whose maturational trajectories are altered in schizophrenia. In addition, we showed that when the brain is divided into five normative developmental modules, the areas with abnormal cortical growth overlap significantly only with the cingulo-fronto-temporal module. Conclusions These findings suggest that abnormal cortical development in schizophrenia may be modularized or constrained by the normal community structure of developmental modules of the human brain connectome.
机译:背景精神分裂症是一种大脑连接障碍和神经发育过程改变的疾病。不同年龄组的横断面病例对照研究表明,儿童期精神分裂症的皮质厚度缺乏可能会随着时间的流逝而正常化,这表明与皮质生长轨迹相关的疾病相关差异。方法我们对106名患有儿童期精神分裂症的患者和102名年龄相匹配的健康志愿者进行了逐年重复的磁共振成像扫描。使用半参数回归,我们模拟了精神分裂症对8至30岁年龄段的整个皮层中约80,000个位置的皮质厚度生长曲线的影响。此外,我们推导了由典型大脑发育中皮质厚度相似的成熟轨迹的皮质区域组成的标准发育模块。结果我们发现先前与精神分裂症有关的前额叶和颞叶区域异常的非线性生长过程,首次区分了具有年龄不变的皮质厚度缺陷的皮质区域和精神分裂症的成熟轨迹改变的区域。此外,我们表明,当大脑被分为五个规范的发育模块时,具有异常皮质生长的区域仅与扣带额颞颞模块显着重叠。结论这些发现表明,精神分裂症的异常皮质发育可能是由人脑连接组发育模块的正常群落结构模块化或约束的。

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