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抑郁改变了“自上而下”的视觉注意:抑郁和健康受试者之间的动态因果建模比较。

Depression alters "top-down" visual attention: a dynamic causal modeling comparison between depressed and healthy subjects.

机构信息

Cyclotron Research Centre, University of Liège, Liège, Belgium.

出版信息

Neuroimage. 2011 Jan 15;54(2):1662-8. doi: 10.1016/j.neuroimage.2010.08.061. Epub 2010 Aug 31.

Abstract

Using functional magnetic resonance imaging (fMRI), we recently demonstrated that nonmedicated patients with a first episode of unipolar major depression (MDD) compared to matched controls exhibited an abnormal neural filtering of irrelevant visual information (Desseilles et al., 2009). During scanning, subjects performed a visual attention task imposing two different levels of attentional load at fixation (low or high), while task-irrelevant colored stimuli were presented in the periphery. In the present study, we focused on the visuo-attentional system and used "Dynamic Causal Modeling" (DCM) on the same dataset to assess how attention influences a network of three dynamically-interconnected brain regions (visual areas V1 and V4, and intraparietal sulcus (P), differentially in MDD patients and healthy controls. Bayesian model selection (BMS) and model space partitioning (MSP) were used to determine the best model in each population. The best model for the controls revealed that the increase of parietal activity by high attention load was selectively associated with a negative modulation of P on V4, consistent with high attention reducing the processing of irrelevant colored peripheral stimuli. The best model accounting for the data from the MDD patients showed that both low and high attention levels exerted modulatory effects on P. The present results document abnormal effective connectivity across visuo-attentional networks in MDD, which likely contributes to deficient attentional filtering of information.

摘要

使用功能磁共振成像(fMRI),我们最近证明,与匹配的对照组相比,首次发作单相重性抑郁症(MDD)的未经药物治疗的患者表现出对无关视觉信息的异常神经过滤(Desseilles 等人,2009 年)。在扫描过程中,受试者在注视时执行一项视觉注意任务,在注视时施加两种不同水平的注意力负荷(低或高),同时在周边呈现任务无关的彩色刺激。在本研究中,我们专注于视觉注意系统,并使用相同的数据集对“动态因果建模”(DCM)进行了评估,以评估注意力如何影响三个动态互联的大脑区域(视觉区域 V1 和 V4 以及顶内沟(P)的网络,在 MDD 患者和健康对照者中存在差异。贝叶斯模型选择(BMS)和模型空间分区(MSP)用于确定每个群体中最佳模型。对照组的最佳模型表明,高注意力负荷引起的顶叶活动增加与 V4 上 P 的负调制选择性相关,这与高注意力降低对无关彩色周边刺激的处理一致。解释 MDD 患者数据的最佳模型表明,低注意力和高注意力水平都对 P 施加了调节作用。本研究结果记录了 MDD 中视觉注意网络之间的异常有效连接,这可能导致信息注意力过滤不足。

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