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Limbic Justice—Amygdala Involvement in Immediate Rejection in the Ultimatum Game

机译:边缘公正-扁桃体参与最后通Game游戏中的即时拒绝

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摘要

Imaging studies have revealed a putative neural account of emotional bias in decision making. However, it has been difficult in previous studies to identify the causal role of the different sub-regions involved in decision making. The Ultimatum Game (UG) is a game to study the punishment of norm-violating behavior. In a previous influential paper on UG it was suggested that frontal insular cortex has a pivotal role in the rejection response. This view has not been reconciled with a vast literature that attributes a crucial role in emotional decision making to a subcortical structure (i.e., amygdala). In this study we propose an anatomy-informed model that may join these views. We also present a design that detects the functional anatomical response to unfair proposals in a subcortical network that mediates rapid reactive responses. We used a functional MRI paradigm to study the early components of decision making and challenged our paradigm with the introduction of a pharmacological intervention to perturb the elicited behavioral and neural response. Benzodiazepine treatment decreased the rejection rate (from 37.6% to 19.0%) concomitantly with a diminished amygdala response to unfair proposals, and this in spite of an unchanged feeling of unfairness and unchanged insular response. In the control group, rejection was directly linked to an increase in amygdala activity. These results allow a functional anatomical detection of the early neural components of rejection associated with the initial reactive emotional response. Thus, the act of immediate rejection seems to be mediated by the limbic system and is not solely driven by cortical processes, as previously suggested. Our results also prompt an ethical discussion as we demonstrated that a commonly used drug influences core functions in the human brain that underlie individual autonomy and economic decision making.
机译:影像学研究表明,在决策过程中可能存在神经偏见。但是,在以前的研究中,很难确定参与决策的不同子区域的因果作用。最后通Game游戏(UG)是一款研究违反规范行为的惩罚的游戏。在先前关于UG的有影响力的论文中,有人提出额叶岛皮层在排斥反应中起关键作用。这种观点并未与大量文献相吻合,这些文献将情绪决策中的关键作用归因于皮层下结构(即杏仁核)。在这项研究中,我们提出了一个解剖学上可能会加入这些观点的模型。我们还提出了一种设计,该设计在介导快速反应性反应的皮层下网络中检测对不合理提议的功能解剖反应。我们使用功能性MRI范例来研究决策的早期组成部分,并通过引入药理干预来扰乱所引发的行为和神经反应来挑战我们的范例。苯并二氮杂treatment治疗降低了排斥率(从37.6%降低到19.0%),同时杏仁核对不公平提议的反应减少,尽管不公平感和岛屿反应不变。在对照组中,排斥反应与杏仁核活性的增加直接相关。这些结果允许功能性解剖学检测与初始反应性情绪反应相关的排斥反应的早期神经成分。因此,如前所述,立即排斥的行为似乎是由边缘系统介导的,而不是仅由皮质过程驱动的。我们的研究结果还引发了一场道德讨论,因为我们证明了常用药物会影响人脑的核心功能,这些功能是个人自主权和经济决策的基础。

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