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Pupillometric investigation into the speed-accuracy trade-off in a visuo-motor aiming task

机译:Visuo-Motor瞄准任务中的速度准确性折衷的瞳孔测量调查

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Convergent lines of evidence suggest that fluctuations in the size of the pupil may be associated with the trade-off between the speed (adrenergic, sympathetic) and accuracy (cholinergic, parasympathetic) of behavior across a variety of task contexts. Here, we explored whether pupil size was related to this trade-off during a visuospatial motor aiming task. Participants were shown visual targets at random locations on a screen and were instructed and incentivized to move a computer mouse-controlled cursor to the center of the targets, either as fast as possible, as accurately as possible, or to strike a balance between the two. Behavioral results showed that these instructions led to typical speed-accuracy trade-off effects on movement reaction times and hit distances to target centers. Pupillometric analyses revealed that movements were faster and less accurate when participants had relatively large baseline pupil sizes, as measured before target onset. Furthermore, trial-evoked pupil dilation was related specifically to a bias toward speed in the trade-off and the speed of the ballistic and error-correction phases of the motor responses such that larger pupils predicted shorter latencies and higher movement speeds. Pupil responses were also associated with performance in a manner that may reflect the combined influence of a number of factors, including the generation of dynamic urgency and an arousal response to negative feedback. Our results generally support a role for pupil-linked arousal in regulating the trade-off between speed and accuracy, while also highlighting how the trial-related pupil response can exhibit multifaceted, temporally discrete associations with behavior.
机译:收敛的证据表明,瞳孔大小的波动可能与在各种任务环境中的行为的速度(肾上腺素能,交感神经)和准确性(Cholinergic,ParasyMPathetic)之间的权衡相关联。在这里,我们探讨了在旨在任务的探测电机期间瞳孔大小与该权衡有关。参与者在屏幕上的随机位置显示了视觉目标,并被指示和激活,以便尽可能快地将计算机控制光标移动到目标的中心,或者尽可能快地,或者在两者之间取得平衡。行为结果表明,这些指令导致典型的速度准确性对运动反应时间的折衷效果,并击中目标中心的距离。瞳孔分析显示,当参与者具有相对大的基线瞳孔尺寸时,运动更快,更准确,如目标发作前的测量。此外,试验诱发的瞳孔扩张特异性地与折衷速度有关,并且电动机响应的弹道和误差阶段的速度达到速度,使得较大的瞳孔预测更短的延迟和更高的移动速度。瞳孔反应也以可能反映多种因素的综合影响的方式与性能相关,包括产生动态紧迫性和对负反馈的唤醒反应。我们的结果一般支持瞳孔关联的唤醒在调节速度和准确性之间的权衡方面的作用,同时还突出了与试验相关的瞳孔响应如何表现出与行为的多方面的,暂时的离散关联。

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