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Theta and high-beta networks for feedback processing: a simultaneous EEG–fMRI study in healthy male subjects

机译:Theta和高Beta网络用于反馈处理:一项针对健康男性受试者的同步EEG-fMRI研究

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摘要

The reward system is important in assessing outcomes to guide behavior. To achieve these purposes, its core components interact with several brain areas involved in cognitive and emotional processing. A key mechanism suggested to subserve these interactions is oscillatory activity, with a prominent role of theta and high-beta oscillations. The present study used single-trial coupling of simultaneously recorded electroencephalography and functional magnetic resonance imaging data to investigate networks associated with oscillatory responses to feedback during a two-choice gambling task in healthy male participants (n=19). Differential associations of theta and high-beta oscillations with non-overlapping brain networks were observed: Increase of high-beta power in response to positive feedback was associated with activations in a largely subcortical network encompassing core areas of the reward network. In contrast, theta-band power increase upon loss was associated with activations in a frontoparietal network that included the anterior cingulate cortex. Trait impulsivity correlated significantly with activations in areas of the theta-associated network. Our results suggest that positive and negative feedback is processed by separate brain networks associated with different cognitive functions. Communication within these networks is mediated by oscillations of different frequency, possibly reflecting different modes of dopaminergic signaling.
机译:奖励制度对于评估结果以指导行为很重要。为了实现这些目的,其核心成分与参与认知和情感加工的多个大脑区域相互作用。建议保留这些相互作用的关键机制是振荡活动,其具有theta和高β振荡的突出作用。本研究使用同时记录的脑电图和功能性磁共振成像数据的单次试验耦合,研究了在健康男性参与者(n = 19)的二选一赌博任务中与反馈的振荡响应相关的网络。观察到theta和高β振荡与不重叠的大脑网络之间的差异性关联:响应正反馈,高β功率的增加与包含奖励网络核心区域的大部分皮层下网络的激活相关。相反,损失后θ带功率的增加与包括前扣带回皮层的额顶网的激活有关。性格冲动与theta相关网络区域的激活显着相关。我们的结果表明,正反馈和负反馈是由与不同认知功能相关的独立大脑网络处理的。这些网络中的通信是由不同频率的振荡所介导的,可能反映了多巴胺能信号传导的不同模式。

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