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Subtle Pupil-Size Changes Associated With Exploration Do Not Affect Visual Sensitivity

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Abstract When we feel restless and easily distracted, continuously switching tasks ( exploration ), our pupils tend to be large. In contrast, when we are calmly focused on a single task ( exploitation ), our pupils tend to be small. According to the Adaptive Gain Theory (AGT), a switch from exploitation to exploration is associated with an increase in norepinephrine in the locus coeruleus, which in turn triggers pupil dilation. However, the AGT does not provide a functional explanation of why exploration triggers pupil dilation. One possibility is that visual sensitivity, which increases with pupil size, is especially important during exploration. We set out to provide evidence consistent with this functional explanation, as well as to replicate two key previous results. Participants performed a four-armed bandit task, which induces both exploration and exploitation behavior. During the task, participants also needed to detect an occasional and unpredictable near-threshold peripheral flash. We replicated two key results: pupils were larger during exploration than during exploitation; and increased pupil size (overall, independent of exploration status) was associated with increased visual sensitivity. However, most importantly, we did not find that visual sensitivity was higher during exploration than during exploitation; probably, the reliable-yet-tiny increase in pupil size during exploration was too small to affect visual sensitivity. We conclude that key previous results are replicable; however, common experimental paradigms, such as the four-armed bandit task, induce only small changes in exploration behavior. Therefore, more powerful paradigms are required in order to test functional explanations of pupil-size changes during exploration and exploitation.
Title: Subtle Pupil-Size Changes Associated With Exploration Do Not Affect Visual Sensitivity
Description:
Abstract When we feel restless and easily distracted, continuously switching tasks ( exploration ), our pupils tend to be large.
In contrast, when we are calmly focused on a single task ( exploitation ), our pupils tend to be small.
According to the Adaptive Gain Theory (AGT), a switch from exploitation to exploration is associated with an increase in norepinephrine in the locus coeruleus, which in turn triggers pupil dilation.
However, the AGT does not provide a functional explanation of why exploration triggers pupil dilation.
One possibility is that visual sensitivity, which increases with pupil size, is especially important during exploration.
We set out to provide evidence consistent with this functional explanation, as well as to replicate two key previous results.
Participants performed a four-armed bandit task, which induces both exploration and exploitation behavior.
During the task, participants also needed to detect an occasional and unpredictable near-threshold peripheral flash.
We replicated two key results: pupils were larger during exploration than during exploitation; and increased pupil size (overall, independent of exploration status) was associated with increased visual sensitivity.
However, most importantly, we did not find that visual sensitivity was higher during exploration than during exploitation; probably, the reliable-yet-tiny increase in pupil size during exploration was too small to affect visual sensitivity.
We conclude that key previous results are replicable; however, common experimental paradigms, such as the four-armed bandit task, induce only small changes in exploration behavior.
Therefore, more powerful paradigms are required in order to test functional explanations of pupil-size changes during exploration and exploitation.

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