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White matter abnormalities of microstructure and physiological noise in schizophrenia

机译:精神分裂症的白质组织和生理噪声异常

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摘要

White matter abnormalities in schizophrenia have been revealed by many imaging techniques and analysis methods. One of the findings by diffusion tensor imaging is a decrease in fractional anisotropy (FA), which is an indicator of white matter integrity. On the other hand, elevation of metabolic rate in white matter was observed from positron emission tomography (PET) studies. In this report, we aim to compare the two structural and functional effects on the same subjects. Our comparison is based on the hypothesis that signal fluctuation in white matter is associated with white matter functional activity. We examined the variance of the signal in resting state fMRI and found significant differences between individuals with schizophrenia and non-psychiatric controls specifically in white matter tissue. Controls showed higher temporal signal-to-noise ratios clustered in regions including temporal, frontal, and parietal lobes, cerebellum, corpus callosum, superior longitudinal fasciculus, and other major white matter tracts. These regions with higher temporal signal-to-noise ratio agree well with those showing higher metabolic activity reported by studies using PET. The results suggest that individuals with schizophrenia tend to have higher functional activity in white matter in certain brain regions relative to healthy controls. Despite some overlaps, the distinct regions for physiological noise are different from those for FA derived from diffusion tensor imaging, and therefore provide a unique angle to explore potential mechanisms to white matter abnormality.
机译:精神分裂症中的白质异常已通过许多成像技术和分析方法得以揭示。扩散张量成像的发现之一是分数各向异性(FA)的降低,这是白质完整性的指标。另一方面,从正电子发射断层扫描(PET)研究中观察到白质中代谢率升高。在本报告中,我们旨在比较同一主题上的两种结构和功能效果。我们的比较基于以下假设:白质中的信号波动与白质功能活性相关。我们检查了静息状态功能磁共振成像中信号的方差,发现精神分裂症患者和非精神病患者在白质组织中存在显着差异。对照显示较高的时间信噪比聚集在包括颞叶,额叶和顶叶,小脑,call体,上纵筋膜和其他主要白质束的区域。这些具有较高时间信噪比的区域与使用PET研究报告的显示较高代谢活性的区域非常吻合。结果表明,相对于健康对照,精神分裂症患者在某些大脑区域的白质中倾向于具有较高的功能活性。尽管有一些重叠,但生理噪声的不同区域与弥散张量成像得出的FA的区域不同,因此为探索白质异常的潜在机制提供了一个独特的角度。

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