Topography of the Anxious Self: Abnormal Rest-Task Modulation in Social Anxiety Disorder.

IF 3.5 3区 医学 Q1 CLINICAL NEUROLOGY Neuroscientist Pub Date : 2023-04-01 DOI:10.1177/10738584211030497
Lorenzo Lucherini Angeletti, Andrea Scalabrini, Valdo Ricca, Georg Northoff
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引用次数: 15

Abstract

Social anxiety disorder (SAD) is characterized by social anxiety/fear, self-attention, and interoception. Functional magnetic resonance imaging studies demonstrate increased activity during symptom-sensitive tasks in regions of the default-mode network (DMN), amygdala (AMG), and salience network (SN). What is the source of this task-unspecific symptom-sensitive hyperactivity in DMN? We address this question by probing SAD resting state (rs) changes in DMN including their relation to other regions as possible source of task-unspecific hyperactivity in the same regions. Our findings show the following: (1) rs-hypoconnectivity within-DMN regions; (2) rs-hyperconnectivity between DMN and AMG/SN; (3) task-evoked hyperactivity in the abnormal rs-regions of DMN and AMG/SN during different symptom-sensitive tasks; (4) negative relationship of rest and task changes in especially anterior DMN regions as their rs-hypoconnectivity is accompanied by task-unspecific hyperactivity; (5) abnormal top-down/bottom-up modulation between anterior DMN regions and AMG during rest and task. Findings demonstrate that rs-hypoconnectivity among DMN regions is negatively related to task-unspecific hyperactivity in DMN and AMG/SN. We propose a model of "Topography of the Anxious Self" in SAD (TAS-SAD). Abnormal DMN-AMG/SN topography during rest, as trait feature of an "unstable social self", is abnormally aggravated during SAD-sensitive situations resulting in task-related hyperactivity in the same regions with an "anxious self" as state feature.

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焦虑自我的地形:社交焦虑障碍的异常休息-任务调节。
社交焦虑障碍(Social anxiety disorder, SAD)以社交焦虑/恐惧、自我关注和内感受为特征。功能性磁共振成像研究表明,在症状敏感任务期间,默认模式网络(DMN)、杏仁核(AMG)和突出网络(SN)区域的活动增加。DMN中这种任务非特异性症状敏感性亢进的来源是什么?我们通过探究DMN中SAD静息状态(rs)的变化来解决这个问题,包括它们与其他区域的关系,作为同一区域中任务非特异性多动的可能来源。研究结果表明:(1)dmn区域内的rs-低连通性;(2) DMN与AMG/SN之间的rs-超连通性;(3)在不同的症状敏感任务中,DMN和AMG/SN的异常rs区存在任务诱发的多动症;(4)休息与任务变化呈负相关,特别是前侧DMN区域的低连通性伴随任务非特异性多动;(5)休息和任务时DMN前部与AMG之间自上而下/自下而上的调节异常。结果表明,DMN区域间的rs-低连通性与DMN和AMG/SN的任务非特异性亢进呈负相关。我们提出了一个焦虑自我地形模型(TAS-SAD)。休息时异常的DMN-AMG/SN地形作为“不稳定社会自我”的特征特征,在sad敏感情况下异常加重,导致与“焦虑自我”作为状态特征的同一区域出现任务相关的多动。
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来源期刊
Neuroscientist
Neuroscientist 医学-临床神经学
CiteScore
11.50
自引率
0.00%
发文量
68
期刊介绍: Edited by Stephen G. Waxman, The Neuroscientist (NRO) reviews and evaluates the noteworthy advances and key trends in molecular, cellular, developmental, behavioral systems, and cognitive neuroscience in a unique disease-relevant format. Aimed at basic neuroscientists, neurologists, neurosurgeons, and psychiatrists in research, academic, and clinical settings, The Neuroscientist reviews and updates the most important new and emerging basic and clinical neuroscience research.
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