内源性准备控制与默认模式和背侧注意网络之间相互作用的增强有关

Maximillian K. Egan, Cyril Costines, Mark D’Esposito, Sepideh Sadaghiani
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引用次数: 0

摘要

摘要 人们越来越认识到,认知控制需要以额叶和顶叶皮层为基础的大规模大脑网络的整合。虽然人们对单个网络的功能作用进行了广泛研究,但对它们在认知控制过程中的跨网络互动却知之甚少。除了对目标相关信息处理(如感官信息)的即时调节外,认知控制还包括对即将到来的刺激和行动进行预测的准备过程。这种准备性控制通常是内源性的,也就是说,它基于内部表征,而不依赖于外部线索或事件。在这里,我们评估了支持这种内生驱动的准备控制的网络交互作用。我们在具有高度可变试验间隔的知觉决策任务中记录了 fMRI(N = 25)。在一半的区块中,试验开始时有提示,而在其余的区块中,参与者不依赖提示而保持准备状态。我们研究了无提示(与有提示)试验前的试验间歇期的内源性准备控制。行为结果证实,在无提示条件下,认知控制要求更高。内源性准备控制与背侧注意网络(DAN)活动的增加有关。这与在试验过程中对刺激-反应处理的即时控制形成了鲜明对比,后者主要得到了右半球前顶叶网络(FPN)的支持。只有在内源性准备控制过程中,交叉网络的相互作用才会得到加强;默认模式网络(DMN)显示出与 DAN 更多的正连接性,其次是与小脑丘网络(CON)的连接性。我们的研究结果表明,跨网络互动对于内源性驱动的准备控制尤为重要。它们进一步表明,DMN可能与内部利用资源进行认知控制有关。这一概念将DMN在内部导向处理中的已知作用扩展到了认知控制领域,即当准备工作无法得到外部事件的帮助时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Endogenous preparatory control is associated with increased interaction between default mode and dorsal attention networks
Abstract It is increasingly recognized that cognitive control requires integration across large-scale brain networks anchored in frontal and parietal cortices. While the functional role of individual networks has been studied extensively, their cross-network interactions in the service of cognitive control are poorly understood. Beyond in-the-moment regulation of goal-relevant information processing (e.g., of sensory information), cognitive control encompasses preparatory processes in anticipation of upcoming stimuli and actions. Such preparatory control is often endogenous, that is, it is based on internal representations without relying on external cues or events. Here, we assessed network interactions that support such endogenously driven preparatory control. We recorded fMRI (N = 25) during a perceptual decision task with highly variable intertrial intervals. In half of the blocks, trial onset was cued, while in the remaining blocks, participants maintained readiness without relying on cues. We studied endogenous preparatory control in the intertrial period preceding uncued (vs. cued) trials. Behavioral outcomes confirmed heavier cognitive control demands in the uncued condition. Endogenous preparatory control was associated with increased activity of the dorsal attention network (DAN). This contrasted with in-the-moment control over stimulus-response processing during the trial itself, which was supported foremost by the right-hemispheric fronto-parietal network (FPN). Cross-network interactions were strengthened exclusively during endogenous preparatory control; the default mode network (DMN) showed more positive connectivity with the DAN and to a lesser degree the cingulo-opercular network (CON). Our results demonstrate that cross-networks interactions are particularly important for endogenously driven preparatory control. They further suggest that the DMN may be implicated in internally harnessing resources for cognitive control. This notion extends the DMN’s known role in internally-oriented processing to the domain of cognitive control when preparation cannot be aided by external events.
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