Altered task-related decoupling of the rostral anterior cingulate cortex in depression

IF 3.4 2区 医学 Q2 NEUROIMAGING Neuroimage-Clinical Pub Date : 2024-01-01 DOI:10.1016/j.nicl.2024.103564
Christine A. Leonards , Ben J. Harrison , Alec J. Jamieson , James Agathos , Trevor Steward , Christopher G. Davey
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Abstract

Dysfunctional activity of the rostral anterior cingulate cortex (rACC) – an extensively connected hub region of the default mode network – has been broadly linked to cognitive and affective impairments in depression. However, the nature of aberrant task-related rACC suppression in depression is incompletely understood. In this study, we sought to characterize functional connectivity of rACC activity suppression (‘deactivation’) – an essential feature of rACC function – during external task engagement in depression. Specifically, we aimed to explore neural patterns of functional decoupling and coupling with the rACC during its task-driven suppression. We enrolled 81 15- to 25-year-old young people with moderate-to-severe major depressive disorder (MDD) before they commenced a 12-week clinical trial that assessed the effectiveness of cognitive behavioral therapy plus either fluoxetine or placebo. Ninety-four matched healthy controls were also recruited. Participants completed a functional magnetic resonance imaging face matching task known to elicit rACC suppression. To identify brain regions associated with the rACC during its task-driven suppression, we employed a seed-based functional connectivity analysis. We found MDD participants, compared to controls, showed significantly reduced ‘decoupling’ of the rACC with extended task-specific regions during task performance. Specifically, less decoupling was observed in the occipital and fusiform gyrus, dorsal ACC, medial prefrontal cortex, cuneus, amygdala, thalamus, and hippocampus. Notably, impaired decoupling was apparent in participants who did not remit to treatment, but not treatment remitters. Further, we found MDD participants showed significant increased coupling with the anterior insula cortex during task engagement. Our findings indicate that aberrant task-related rACC suppression is associated with disruptions in adaptive neural communication and dynamic switching between internal and external cognitive modes that may underpin maladaptive cognitions and biased emotional processing in depression.

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抑郁症患者喙状前扣带回皮层任务相关解耦的改变
喙状前扣带回皮层(rACC)是默认模式网络中连接广泛的枢纽区域,它的功能失调与抑郁症患者的认知和情感障碍有着广泛的联系。然而,人们对抑郁症患者与任务相关的 rACC 抑制异常的本质尚不完全清楚。在这项研究中,我们试图描述抑郁症患者在参与外部任务时 rACC 活动抑制("失活")的功能连接性--这是 rACC 功能的一个基本特征。具体来说,我们旨在探索在任务驱动的抑制过程中与 rACC 功能解耦和耦合的神经模式。我们招募了81名患有中度至重度重度抑郁症(MDD)的15至25岁年轻人,在他们开始为期12周的临床试验之前,对认知行为疗法加氟西汀或安慰剂的效果进行了评估。同时还招募了 94 名匹配的健康对照者。受试者完成了一项功能磁共振成像面部匹配任务,该任务已知会引起rACC抑制。为了确定在任务驱动的抑制过程中与 rACC 相关的脑区,我们采用了基于种子的功能连接分析。我们发现,与对照组相比,MDD 参与者在完成任务时,rACC 与扩展任务特异性区域的 "解耦 "明显减少。具体来说,在枕叶和纺锤形回、背侧 ACC、内侧前额叶皮层、楔状突、杏仁核、丘脑和海马中观察到的解耦作用较弱。值得注意的是,在治疗后未缓解的参与者中,解耦功能明显受损,而在治疗后缓解的参与者中则没有这种现象。此外,我们还发现 MDD 参与者在参与任务期间与前脑岛皮层的耦合显著增加。我们的研究结果表明,与任务相关的rACC抑制异常与适应性神经交流中断以及内部和外部认知模式之间的动态切换有关,这可能是抑郁症患者适应不良认知和偏差情绪处理的基础。
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来源期刊
Neuroimage-Clinical
Neuroimage-Clinical NEUROIMAGING-
CiteScore
7.50
自引率
4.80%
发文量
368
审稿时长
52 days
期刊介绍: NeuroImage: Clinical, a journal of diseases, disorders and syndromes involving the Nervous System, provides a vehicle for communicating important advances in the study of abnormal structure-function relationships of the human nervous system based on imaging. The focus of NeuroImage: Clinical is on defining changes to the brain associated with primary neurologic and psychiatric diseases and disorders of the nervous system as well as behavioral syndromes and developmental conditions. The main criterion for judging papers is the extent of scientific advancement in the understanding of the pathophysiologic mechanisms of diseases and disorders, in identification of functional models that link clinical signs and symptoms with brain function and in the creation of image based tools applicable to a broad range of clinical needs including diagnosis, monitoring and tracking of illness, predicting therapeutic response and development of new treatments. Papers dealing with structure and function in animal models will also be considered if they reveal mechanisms that can be readily translated to human conditions.
期刊最新文献
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