Pupillometry reveals the role of arousal in a postexercise benefit to executive function

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Abstract

A single bout of aerobic exercise improves executive function; however, the mechanism(s) underlying this improvement remains unclear. Here, we employed a 20-min bout of aerobic exercise, and at pre-and immediate post-exercise sessions examined executive function via pro-(i.e., saccade to veridical target location) and anti-saccade (i.e., saccade mirror symmetrical to a target) performance and pupillometry metrics. Notably, tonic and phasic pupillometry responses in oculomotor control provided a framework to determine the degree that arousal and/or executive resource recruitment influence behavior. Results demonstrated a pre-to post-exercise decrease in pro-and anti-saccade reaction times (p = 0.01) concurrent with a decrease and increase in tonic baseline pupil size and task-evoked pupil dilations, respectively (ps < 0.03). Such results demonstrate that an exercise-induced improvement in saccade performance is related to an executive-mediated “shift” in physiological and/or psychological arousal, supported by the locus coeruleus norepinephrine system to optimize task engagement.

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APA

Ayala, N., & Heath, M. (2021). Pupillometry reveals the role of arousal in a postexercise benefit to executive function. Brain Sciences, 11(8). https://doi.org/10.3390/brainsci11081048

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