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通过信心判断和扫视曲率比较感知决策和运动决策

Comparison of perceptual and motor decisions via confidence judgments and saccade curvature.

作者信息

Cardoso-Leite Pedro, Gorea Andrei

机构信息

Laboratoire Psychologie de la Perception UMR 8158, Université Paris Descartes and Centre National de la Recherche Scientifique, 75006 Paris, France.

出版信息

J Neurophysiol. 2009 Jun;101(6):2822-36. doi: 10.1152/jn.91269.2008. Epub 2009 Mar 4.

Abstract

This study investigated the effects on perceptual and motor decisions of low-contrast distractors, presented 5 degrees on the left and/or the right of the fixation point. Perceptual decisions were assessed with a yes/no (distractor) detection task. Motor decisions were assessed via these distractors' effects on the trajectory of an impending saccade to a distinct imperative stimulus, presented 10 degrees above fixation 50 ms after the distractor(s). Saccade curvature models postulate that distractors activate loci on a motor map that evoke reflexive saccades and that the distractor evoked activity is inhibited to prevent reflexive orienting to the cost of causing a saccade curvature away from the distractor. Depending on whether or not each of these processes depends on perceptual detection, one can predict the relationships between saccades' curvature and perceptual responses (classified as correct rejections, misses, false alarms, and hits). The results show that saccades curve away from distractors only when observers report them to be present. Furthermore, saccade deviation is correlated (on a trial-by-trial basis) with the inferred internal response associated with the perceptual report: the stronger the distractor-evoked perceptual response, the more saccades deviate away from the distractor. Also in contrast with a supersensitive motor system, perceptual sensitivity is systematically higher than the motor sensitivity derived from the distributions of the saccades' curvatures. Finally, when both distractors are present (and straight saccades are expected), the sign of saccades' curvature is correlated with observers' perceptual bias/criterion. Overall the results point to a strong perceptual-motor association.

摘要

本研究调查了低对比度干扰物对感知和运动决策的影响,这些干扰物呈现在注视点左侧和/或右侧5度处。感知决策通过是/否(干扰物)检测任务进行评估。运动决策通过这些干扰物对即将发生的扫视运动轨迹的影响来评估,扫视运动是针对在干扰物出现后50毫秒出现在注视点上方10度处的一个明确的指令性刺激。扫视曲率模型假定,干扰物激活运动图谱上的位点,引发反射性扫视,并且干扰物诱发的活动会受到抑制,以防止反射性定向,代价是导致扫视曲率远离干扰物。根据这些过程中的每一个是否依赖于感知检测,可以预测扫视曲率与感知反应(分类为正确拒绝、漏报、误报和命中)之间的关系。结果表明,只有当观察者报告干扰物存在时,扫视才会弯曲远离干扰物。此外,扫视偏差(在逐次试验的基础上)与与感知报告相关的推断内部反应相关:干扰物诱发的感知反应越强,扫视偏离干扰物的程度就越大。同样与超敏感运动系统相反,感知敏感性系统地高于从扫视曲率分布得出的运动敏感性。最后,当两个干扰物都存在时(并且预期会出现直线扫视),扫视曲率的符号与观察者的感知偏差/标准相关。总体而言,结果表明存在强烈的感知 - 运动关联。

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