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A Functional Neuroimaging Meta-Analysis of Self-Related Processing in Schizophrenia

机译:精神分裂症自我相关过程的功能性神经影像荟萃分析

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>Background: Schizophrenia is characterized by self-disturbances, including impaired self-evaluation abilities and source monitoring. The cortical midline structures (e.g., medial prefrontal cortex, anterior and posterior cingulate cortex, and precuneus) and the temporoparietal junction are known to play a key role in self-related processing. In theory, self-disturbances in schizophrenia may arise from impaired activity in these regions. We performed a functional neuroimaging meta-analysis to verify this hypothesis.>Methods: A literature search was performed with PubMed and Google Scholar to identify functional neuroimaging studies examining the neural correlates of self-processing in schizophrenia, using self-other or source monitoring paradigms. Fourteen studies were retrieved, involving 245 patients and 201 controls. Using peak coordinates to recreate an effect-size map of contrast results, a standard random-effects variance weighted meta-analysis for each voxel was performed with the Seed-based d Mapping software.>Results: During self-processing, decreased activations were observed in schizophrenia patients relative to controls in the bilateral thalamus and the left dorsal anterior cingulate cortex (dACC) and dorso-medial prefrontal cortex. Importantly, results were homogeneous across studies, and no publication bias was observed. Sensitivity analyses revealed that results were replicable in 93–100% of studies.>Conclusion: The current results partially support the hypothesized impaired activity of cortical midline brain regions in schizophrenia during self-processing. Decreased activations were observed in the dACC and dorsomedial prefrontal cortex, which are involved in cognitive control and/or salience attribution, as well as decision-making, respectively. These alterations may compromise patients' ability to direct their attention toward themselves and/or others and to make the decision whether a certain trait applies to one's self or to someone else. In addition, decreased activations were observed in the thalamus, which is not a core region of the default-mode network, and is involved in information integration. These thalamic alterations may compromise self-coherence in schizophrenia.
机译:>背景:精神分裂症的特征是自我干扰,包括自我评估能力和源监控的受损。已知皮质中线结构(例如内侧前额叶皮层,前扣带回和后扣带回皮以及前突神经)和颞顶结在自相关加工中起关键作用。从理论上讲,精神分裂症的自我干扰可能是由这些区域的活动受损引起的。我们进行了功能性神经影像学荟萃分析,以验证这一假设。>方法:使用PubMed和Google Scholar进行文献搜索,以鉴定功能性神经影像学研究,以检查使用自我的精神分裂症患者的自我处理的神经相关性。 -其他或源监视范例。检索了14个研究,涉及245位患者和201位对照。使用峰值坐标重新创建对比结果的效果尺寸图,并使用基于种子的d映射软件对每个体素进行了标准的随机效果方差加权元分析。>结果:在处理过程中,相对于双侧丘脑和左背扣带前皮层(dACC)和背中前额叶皮层的对照,精神分裂症患者的激活降低。重要的是,各研究结果均一,并且未观察到发表偏倚。敏感性分析表明,这些结果在93%至100%的研究中是可重复的。>结论:。当前结果部分支持了在自我加工过程中精神分裂症中皮层中线大脑区域活动被假设受损的情况。分别在认知控制和/或显着性归因以及决策中涉及的dACC和背体前额叶皮层中观察到了激活减少。这些改变可能会损害患者将注意力转移到自己和/或他人身上的能力,并无法决定某种特征是否适用于自己或他人。此外,在丘脑中观察到的激活减少,丘脑不是默认模式网络的核心区域,并且参与了信息集成。这些丘脑改变可能会损害精神分裂症的自我相干性。

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