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Influence of ventral tegmental area input on cortico-subcortical networks underlying action control and decision making

机译:腹侧引物区对皮质 - 皮质网络基础行动控制和决策的影响

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摘要

It is argued that the mesolimbic system has a more general function in processing all salient events, including and extending beyond rewards. Saliency was defined as an event that is unexpected due to its frequency of occurrence and elicits an attentional-behavioral switch. Using functional magnetic resonance imaging (fMRI), signals were measured in response to the modulation of salience of rewarding and nonrewarding events during a reward-based decision making task, the so called desire-reason dilemma paradigm (DRD). Replicating previous findings, both frequent and infrequent, and therefore salient, reward stimuli elicited reliable activation of the ventral tegmental area (VTA) and ventral striatum (vStr). When immediate reward desiring contradicted the superordinate task-goal, we found an increased activation of the VTA and vStr when the salient reward stimuli were presented compared to the nonsalient reward stimuli, indicating a boosting of activation in these brain regions. Furthermore, we found a significantly increased functional connectivity between the VTA and vStr, confirming the boosting of vStr activation via VTA input. Moreover, saliency per se without a reward association led to an increased activation of brain regions in the mesolimbic reward system as well as the orbitofrontal cortex (OFC), inferior frontal gyrus (IFG), and anterior cingulate cortex (ACC). Finally, findings uncovered multiple increased functional interactions between cortical saliency-processing brain areas and the VTA and vStr underlying detection and processing of salient events and adaptive decision making.
机译:认为,Mesolimbic系统在处理所有突出的事件时具有更一般的功能,包括并延伸超出奖励。显着性被定义为由于其发生频率和引发注意力行为开关而导致的事件。使用功能磁共振成像(FMRI),在奖励基于决策任务期间,测量信号是响应于奖励和非奖励事件的显着性的调节,所谓的欲望困境范式(DRD)。经常和不常见的先前发现,因此突出,奖励刺激引发了腹侧腹部面积(VTA)和腹侧纹状体(VSTR)的可靠激活。当立即奖励欲望与上级任务目标相矛盾时,我们发现在与非不合奖励刺激相比呈现突出的奖励刺激时VTA和Vstr的激活增加,表明这些脑区中的激活升高。此外,我们发现VTA和VSTR之间的功能连通性显着增加,确认通过VTA输入升高VSTR激活。此外,没有奖励关联的效力本身导致培养基奖励系统中脑区的激活增加以及胰胰蛋白质皮质(OFC),较差的额相回到(IFG)和前铰接皮质(ACC)。最后,发现在皮质显着处理脑区域和VTA和VSTR潜在的检测和突出事件的处理和自适应决策过程之间进行了多次增加的功能相互作用。

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