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首页> 外文期刊>Journal of Cognitive Neuroscience >Pupil Diameter Tracks the Exploration–Exploitation Trade-off during Analogical Reasoning and Explains Individual Differences in Fluid Intelligence
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Pupil Diameter Tracks the Exploration–Exploitation Trade-off during Analogical Reasoning and Explains Individual Differences in Fluid Intelligence

机译:学生直径在类比推理过程中跟踪勘探与开发的权衡,并解释流体智能中的个体差异

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摘要

The ability to adaptively shift between exploration and exploitation control states is critical for optimizing behavioral performance. Converging evidence from primate electrophysiology and computational neural modeling has suggested that this ability may be mediated by the broad norepinephrine projections emanating from the locus coeruleus (LC) [Aston-Jones, G., & Cohen, J. D. An integrative theory of locus coeruleus-norepinephrine function: Adaptive gain and optimal performance. 403–450, 2005]. There is also evidence that pupil diameter covaries systematically with LC activity. Although imperfect and indirect, this link makes pupillometry a useful tool for studying the locus coeruleus norepinephrine system in humans and in high-level tasks. Here, we present a novel paradigm that examines how the pupillary response during exploration and exploitation covaries with individual differences in fluid intelligence during analogical reasoning on Raven's Advanced Progressive Matrices. Pupillometry was used as a noninvasive proxy for LC activity, and concurrent think-aloud verbal protocols were used to identify exploratory and exploitative solution periods. This novel combination of pupillometry and verbal protocols from 40 participants revealed a decrease in pupil diameter during exploitation and an increase during exploration. The temporal dynamics of the pupillary response was characterized by a steep increase during the transition to exploratory periods, sustained dilation for many seconds afterward, and followed by gradual return to baseline. Moreover, the individual differences in the relative magnitude of pupillary dilation accounted for 16% of the variance in Advanced Progressive Matrices scores. Assuming that pupil diameter is a valid index of LC activity, these results establish promising preliminary connections between the literature on locus coeruleus norepinephrine-mediated cognitive control- and the literature on analogical reasoning and fluid intelligence.
机译:在探索和开发控制状态之间自适应切换的能力对于优化行为性能至关重要。灵长类动物电生理学和计算神经模型的综合证据表明,这种能力可能是由蓝斑(LC)发出的广泛的去甲肾上腺素预测介导的[Aston-Jones,G.,&Cohen,JD一种蓝斑原斑-去甲肾上腺素的综合理论功能:自适应增益和最佳性能。 403–450,2005年]。也有证据表明瞳孔直径与LC活性有系统的协变。尽管不完美和间接,但此链接使瞳孔测定法成为研究人和高级任务中蓝斑去甲肾上腺素基因座系统的有用工具。在这里,我们提出了一个新颖的范式,该范式检查了在Raven高级进阶矩阵上进行类比推理时,探索和开发过程中的瞳孔反应与流体智能的个体差异如何协变。眼压计被用作LC活动的非侵入性代理,并发思考方式的口头协议被用来确定探索性和开发性解决方案的期限。来自40位参与者的这种新颖的瞳孔测量法和口头协议组合显示,在开发过程中瞳孔直径减小,在探索过程中瞳孔直径增大。瞳孔反应的时间动态特征是在过渡到探索期期间急剧增加,此后持续扩张几秒钟,然后逐渐返回基线。此外,瞳孔扩张相对大小的个体差异占高级进阶矩阵评分方差的16%。假设瞳孔直径是LC活动的有效指标,这些结果在蓝斑去甲肾上腺素介导的认知控制文献与类比推理和流体智力的文献之间建立了有希望的初步联系。

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