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Decision-related pupil dilation reflects upcoming choice and individual bias

机译:与决策相关的瞳孔扩张反映了即将到来的选择和个人偏见

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摘要

A number of studies have shown that pupil size increases transiently during effortful decisions. These decision-related changes in pupil size are mediated by central neuromodulatory systems, which also influence the internal state of brain regions engaged in decision making. It has been proposed that pupil-linked neuromodulatory systems are activated by the termination of decision processes, and, consequently, that these systems primarily affect the postdecisional brain state. Here, we present pupil results that run contrary to this proposal, suggesting an important intradecisional role. We measured pupil size while subjects formed protracted decisions about the presence or absence ("yes" vs. "no") of a visual contrast signal embedded in dynamic noise. Linear systems analysis revealed that the pupil was significantly driven by a sustained input throughout the course of the decision formation. This sustained component was larger than the transient component during the final choice (indicated by button press). The overall amplitude of pupil dilation during decision formation was bigger before yes than no choices, irrespective of the physical presence of the target signal. Remarkably, the magnitude of this pupil choice effect (yes > no) reflected the individual criterion: it was strongest in conservative subjects choosing yes against their bias. We conclude that the central neuromodulatory systems controlling pupil size are continuously engaged during decision formation in a way that reveals how the upcoming choice relates to the decision maker's attitude. Changes in brain state seem to interact with biased decision making in the face of uncertainty.
机译:大量研究表明,在努力的决策过程中,瞳孔大小会瞬时增加。这些与决策有关的瞳孔大小变化是由中枢神经调节系统介导的,这也影响参与决策的大脑区域的内部状态。已经提出,通过决策过程的终止来激活与瞳孔相连的神经调节系统,因此,这些系统主要影响决策后的大脑状态。在这里,我们提出的学生成绩与该提议背道而驰,表明了重要的内切作用。我们测量了学生的瞳孔大小,而受试者则对嵌入动态噪声中的视觉对比信号的存在与否(“是”与“否”)做出了持久的决定。线性系统分析显示,在整个决策形成过程中,瞳孔受到持续输入的显着驱动。在最终选择期间(按按钮指示),该持续分量大于瞬态分量。不管目标信号的物理存在如何,在决策形成过程中,瞳孔扩张的总幅度要比是没有要大。值得注意的是,这种瞳孔选择效应的大小(是>否)反映了个体标准:在保守的受试者中,选择“是”是对他们的偏见最强。我们得出的结论是,控制瞳孔大小的中央神经调节系统在决策形成过程中不断参与,从而揭示了即将到来的选择与决策者的态度之间的关系。面对不确定性,大脑状态的变化似乎与有偏见的决策相互作用。

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