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Anterior cingulate cortex-related connectivity in first-episode schizophrenia: a spectral dynamic causal modeling study with functional magnetic resonance imaging

机译:首发精神分裂症的前扣带回皮质相关连通性:功能磁共振成像的光谱动态因果模型研究

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摘要

Understanding the neural basis of schizophrenia (SZ) is important for shedding light on the neurobiological mechanisms underlying this mental disorder. Structural and functional alterations in the anterior cingulate cortex (ACC), dorsolateral prefrontal cortex (DLPFC), hippocampus, and medial prefrontal cortex (MPFC) have been implicated in the neurobiology of SZ. However, the effective connectivity among them in SZ remains unclear. The current study investigated how neuronal pathways involving these regions were affected in first-episode SZ using functional magnetic resonance imaging (fMRI). Forty-nine patients with a first-episode of psychosis and diagnosis of SZ—according to the Diagnostic and Statistical Manual of Mental Disorders, Fourth Edition, Text Revision—were studied. Fifty healthy controls (HCs) were included for comparison. All subjects underwent resting state fMRI. We used spectral dynamic causal modeling (DCM) to estimate directed connections among the bilateral ACC, DLPFC, hippocampus, and MPFC. We characterized the differences using Bayesian parameter averaging (BPA) in addition to classical inference (t-test). In addition to common effective connectivity in these two groups, HCs displayed widespread significant connections predominantly involved in ACC not detected in SZ patients, but SZ showed few connections. Based on BPA results, SZ patients exhibited anterior cingulate cortico-prefrontal-hippocampal hyperconnectivity, as well as ACC-related and hippocampal-dorsolateral prefrontal-medial prefrontal hypoconnectivity. In summary, spectral DCM revealed the pattern of effective connectivity involving ACC in patients with first-episode SZ. This study provides a potential link between SZ and dysfunction of ACC, creating an ideal situation to associate mechanisms behind SZ with aberrant connectivity among these cognition and emotion-related regions.
机译:了解精神分裂症(SZ)的神经基础对于阐明这种精神障碍的神经生物学机制很重要。前扣带回皮层(ACC),背外侧前额叶皮层(DLPFC),海马和内侧前额叶皮层(MPFC)的结构和功能改变与SZ的神经生物学有关。但是,它们之间在深圳的有效连接仍不清楚。当前的研究使用功能性磁共振成像(fMRI)研究了首发SZ中涉及这些区域的神经元通路如何受到影响。根据《精神障碍诊断和统计手册》第四版,文本修订版,研究了49名首发精神病和SZ诊断的患者。包括五十个健康对照(HCs)用于比较。所有受试者均接受了静息功能磁共振成像。我们使用频谱动态因果模型(DCM)估算了双边ACC,DLPFC,海马和MPFC之间的定向连接。除了经典推理(t检验)以外,我们还使用贝叶斯参数平均(BPA)来表征差异。除了这两组中常见的有效连接以外,HC还显示出广泛的重要连接,这些连接主要涉及在SZ患者中未检测到的ACC,但SZ显示出很少的连接。根据BPA结果,SZ患者表现出前扣带回皮层-前额-海马的超连通性,以及ACC相关和海马-背外侧前额-中-额前低连通性。总之,光谱DCM揭示了首发SZ患者涉及ACC的有效连通性模式。这项研究提供了SZ与ACC功能障碍之间的潜在联系,创造了一种理想的情况,将SZ背后的机制与这些认知和情感相关区域之间的异常连通性相关联。

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