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Functional Connectivity with Distinct Neural Networks Tracks Fluctuations in Gain/Loss Framing Susceptibility

机译:具有独特神经网络的功能连接可跟踪增益/损耗帧敏感性的波动

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摘要

Multiple large-scale neural networks orchestrate a wide range of cognitive processes. For example, interoceptive processes related to self-referential thinking have been linked to the default-mode network (DMN); whereas exteroceptive processes related to cognitive control have been linked to the executive-control network (ECN). Although the DMN and ECN have been postulated to exert opposing effects on cognition, it remains unclear how connectivity with these spatially overlapping networks contribute to fluctuations in behavior. While previous work has suggested the medial prefrontal cortex (MPFC) is involved in behavioral change following feedback, these observations could be linked to interoceptive processes tied to DMN or exteroceptive processes tied to ECN because MPFC is positioned in both networks. To address this problem, we employed independent component analysis combined with dual-regression functional connectivity analysis. Participants made a series of financial decisions framed as monetary gains or losses. In some sessions, participants received feedback from a peer observing their choices; in other sessions, feedback was not provided. Following feedback, framing susceptibility—indexed as the increase in gambling behavior in loss frames compared to gain frames—was heightened in some participants and diminished in others. We examined whether these individual differences were linked to differences in connectivity by contrasting sessions containing feedback against those that did not contain feedback. We found two key results. As framing susceptibility increased, the MPFC increased connectivity with DMN; in contrast, temporal-parietal junction decreased connectivity with the ECN. Our results highlight how functional connectivity patterns with distinct neural networks contribute to idiosyncratic behavioral changes.
机译:多个大型神经网络可以协调广泛的认知过程。例如,与自我指称思维有关的感知过程已链接到默认模式网络(DMN);而与认知控制有关的外在感受过程已与执行控制网络(ECN)相关联。尽管已经假设DMN和ECN对认知产生相反的影响,但仍不清楚与这些空间重叠网络的连通性如何导致行为波动。尽管先前的研究表明,内侧前额叶皮层(MPFC)参与了反馈后的行为改变,但由于MPFC位于两个网络中,因此这些观察结果可能与与DMN相关的感觉过程或与ECN相关的外觉过程有关。为了解决这个问题,我们采用了独立成分分析和双回归功能连通性分析相结合的方法。参与者做出了一系列以金钱损益为基础的财务决定。在某些会议中,参与者从同行那里观察到他们的选择的反馈;在其他会话中,未提供反馈。得到反馈后,某些参与者的成帧敏感性增加了,而与获利框架相比,则表示赌博行为的增加。而另一些参与者则降低了。我们通过将包含反馈的会话与不包含反馈的会话进行对比,检查了这些个体差异是否与连通性差异相关。我们发现了两个关键结果。随着帧敏感性的增加,MPFC增加了与DMN的连接性;相反,颞顶连接降低了与ECN的连通性。我们的结果强调了具有不同神经网络的功能连接模式如何促进特质行为改变。

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