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首页> 外文期刊>Neuropsychiatric Disease and Treatment >Absent activation in medial prefrontal cortex and temporoparietal junction but not superior temporal sulcus during the perception of biological motion in schizophrenia: a functional MRI study
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Absent activation in medial prefrontal cortex and temporoparietal junction but not superior temporal sulcus during the perception of biological motion in schizophrenia: a functional MRI study

机译:功能性MRI研究:在精神分裂症的生物运动过程中,内侧额叶前额叶皮层和颞顶叶连接处没有激活,但颞上沟没有激活

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Background: Patients with schizophrenia show disturbances in both visual perception and social cognition. Perception of biological motion (BM) is a higher-level visual process, and is known to be associated with social cognition. BM induces activation in the “social brain network”, including the superior temporal sulcus (STS). Although deficits in the detection of BM and atypical activation in the STS have been reported in patients with schizophrenia, it remains unclear whether other nodes of the “social brain network” are also atypical in patients with schizophrenia.Purpose: We aimed to explore whether brain regions other than STS were involved during BM perception in patients with schizophrenia, using functional magnetic resonance imaging (fMRI).Methods and patients: Seventeen patients with schizophrenia, and 17 age- and sex- matched healthy controls, underwent fMRI scanning during a one-back visual task, containing three experimental conditions: (1) BM, (2) scrambled motion (SM), and (3) static condition. We used one-sample t-tests to examine neural responses selective to BM versus SM within each group, and two-sample t-tests to directly compare neural patterns to BM versus SM in schizophrenics versus controls.Results: We found significant activation in the STS region when BM was contrasted with SM in both groups, with no significant difference between groups. On the contrary, significant activation in the medial prefrontal cortex (MPFC) and bilateral temporoparietal junction (TPJ) was found only in the control group. When we directly compared the two groups, the healthy controls showed significant greater activation in left MPFC and TPJ to BM versus SM than patients with schizophrenia. Conclusion: Our findings suggest that patients with schizophrenia show normal activation to biologically and socially relevant motion stimuli in the STS, but atypical activation in other regions of the social brain network, specifically MPFC and TPJ. Moreover, these results were not due to atypical processing of motion, suggesting that patients with schizophrenia lack in the recruitment of neural circuits needed for the visual perception of social cognition.
机译:背景:精神分裂症患者的视觉感知和社交认知均出现障碍。对生物运动(BM)的感知是一个更高层次的视觉过程,并且已知与社会认知有关。 BM在包括上颞沟(STS)在内的“社交脑网络”中诱导激活。尽管在精神分裂症患者中已经报道了STS中BM的检测和非典型激活的缺陷,但尚不清楚“社会性大脑网络”的其他节点在精神分裂症患者中是否也非典型。目的:我们旨在探讨大脑是否方法和患者:17例精神分裂症患者以及17例年龄和性别相匹配的健康对照者,在一次精神分裂症的扫描过程中进行了一次fMRI扫描。后视任务,包含三个实验条件:(1)BM,(2)扰动(SM)和(3)静态条件。我们使用一样本t检验来检验各组中针对BM与SM的选择性神经反应,并使用两样本t检验直接比较精神分裂症患者与对照中的神经模式与BM与SM的结果。两组在BM与SM对比时的STS区域,两组之间无显着差异。相反,仅在对照组中发现内侧前额叶皮层(MPFC)和双侧颞顶结(TPJ)有明显激活。当我们直接比较两组时,健康对照者显示,与精神分裂症患者相比,左MPFC和TPJ向BM的激活明显高于BM。结论:我们的发现表明,精神分裂症患者在STS中显示出对生物学和社会相关运动刺激的正常激活,但在社交脑网络的其他区域(特别是MPFC和TPJ)显示出非典型激活。此外,这些结果不是由于运动的非典型处理所致,这表明精神分裂症患者缺乏社交认知的视觉感知所需的神经回路的募集。

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