首页> 美国卫生研究院文献>Frontiers in Integrative Neuroscience >Enhanced Theta-Band Coherence Between Midfrontal and Posterior Parietal Areas Reflects Post-feedback Adjustments in the State of Outcome Uncertainty
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Enhanced Theta-Band Coherence Between Midfrontal and Posterior Parietal Areas Reflects Post-feedback Adjustments in the State of Outcome Uncertainty

机译:额中部和后壁区域之间的θ带连贯性增强反映了结果不确定状态下的反馈后调整

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摘要

Medial frontal cortex is currently viewed as the main hub of the performance monitoring system; upon detection of an error committed, it establishes functional connections with brain regions involved in task performance, thus leading to neural adjustments in them. Previous research has identified targets of such adjustments in the dorsolateral prefrontal cortex, posterior cortical regions, motor cortical areas, and subthalamic nucleus. Yet most of such studies involved visual tasks with relatively moderate cognitive load and strong dependence on motor inhibition – thus highlighting sensory, executive and motor effects while underestimating sensorimotor transformation and related aspects of decision making. Currently there is ample evidence that posterior parietal cortical areas are involved in task-specific neural processes of decision making (including evidence accumulation, sensorimotor transformation, attention, etc.) – yet, to our knowledge, no EEG studies have demonstrated post-error increase in functional connectivity in the theta-band between midfrontal and posterior parietal areas during performance on non-visual tasks. In the present study, we recorded EEG while subjects were performing an auditory version of the cognitively demanding attentional condensation task; this task involves rather non-straightforward stimulus-to-response mapping rules, thus, creating increased load on sensorimotor transformation. We observed strong pre-response alpha-band suppression in the left parietal area, which presumably reflected involvement of the posterior parietal cortex in task-specific decision-making processes. Negative feedback was followed by increased midfrontal theta-band power and increased functional coupling in the theta band between midfrontal and left parietal regions. This could be interpreted as activation of the performance monitoring system and top–down influence of this system on the posterior parietal regions involved in decision making, respectively. This inter-site coupling related to negative feedback was stronger for subjects who tended to commit errors with slower response times. Generally, current findings support the idea that slower errors are related to the state of outcome uncertainty caused by failures of task-specific processes, associated with posterior parietal regions.
机译:内侧额叶皮层目前被认为是性能监测系统的主要枢纽。一旦检测到犯下的错误,它就会与参与任务执行的大脑区域建立功能连接,从而导致大脑中的神经调节。先前的研究已经确定了在背外侧前额叶皮层,后皮质区域,运动皮质区域和丘脑下核中进行此类调整的目标。然而,大多数此类研究涉及视觉任务,这些任务具有相对中等的认知负荷,并且强烈依赖于运动抑制,因此突出了感觉,执行和运动效应,同时低估了感觉运动转换和决策的相关方面。目前,有充分的证据表明,后顶叶皮质区域参与了特定任务的决策神经过程(包括证据积累,感觉运动转换,注意力等);然而,据我们所知,尚无脑电图研究显示出误差后增加在非视觉任务执行过程中,位于额中部和后壁之间的θ带中的功能连接。在本研究中,我们记录了当受试者正在执行听觉上需要认知凝结的注意力凝结任务时的脑电图。该任务涉及相当不直接的刺激到反应的映射规则,因此在感觉运动转换上增加了负担。我们观察到左顶叶区域强烈的反应前α-带抑制作用,这大概反映了后顶叶皮质参与特定任务的决策过程。负反馈后,中额叶区带功率增加,中额叶区和左顶叶区之间的θ带功能耦合增加。这可以分别解释为绩效监控系统的激活和该系统对决策所涉及的后顶区的自上而下的影响。对于倾向于犯错误且响应时间较慢的受试者,这种与负反馈相关的部位间耦合更强。通常,当前的发现支持以下观点:较慢的错误与任务特定过程的失败(与后壁区域相关)导致的结果不确定状态有关。

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