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Optimal and Suboptimal Use of Postsaccadic Vision in Sequences of Saccades

机译:扫视序列中后视力视觉的最佳和次优使用

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摘要

Saccades are imprecise, due to sensory and motor noise. To avoid an accumulation of errors during sequences of saccades, a prediction derived from the efference copy can be combined with the reafferent visual feedback to adjust the following eye movement. By varying the information quantity of the visual feedback, we investigated how the reliability of the visual information affects the postsaccadic update in humans. Two elements of the visual scene were manipulated, the saccade target or the background, presented either together or in isolation. We determined the weight of the postsaccadic visual information by measuring the effect of intrasaccadic visual shifts on the following saccade. We confirmed that the weight of visual information evolves with information quantity as predicted for a statistically optimal system. In particular, we found that the visual background alone can guide the postsaccadic update, and that information from target and background are optimally combined. Moreover, these visual weights are adjusted dynamically and on a trial-to-trial basis to the level of visual noise determined by target eccentricity and reaction time. In contrast, we uncovered a dissociation between the visual signals used to update the next planned saccade (main saccade) and those used to generate an involuntary corrective saccade. The latter was exclusively based on visual information about the target, and discarded all information about the background: a suboptimal use of visual evidence.
机译:由于感觉和运动噪声,扫视不精确。为了避免在扫视序列期间积累错误,可以将从有效副本中得出的预测与后视视觉反馈进行组合,以调整后续的眼球运动。通过改变视觉反馈的信息量,我们研究了视觉信息的可靠性如何影响人类的课后更新。视觉场景的两个元素,即扫视目标或背景,被一起或单独呈现。我们通过测量眼睑内视力变化对以下扫视的影响,确定了眼睑后视觉信息的权重。我们确认视觉信息的权重随信息量的变化而变化,这是统计上最优的系统所预测的。特别是,我们发现仅凭视觉背景就可以指导课后更新,并且可以将目标和背景信息进行最佳组合。此外,这些视觉权重可以动态调整并在试验基础上调整到由目标偏心率和反应时间确定的视觉噪声水平。相比之下,我们发现了用于更新下一个计划扫视(主扫视)的视觉信号与用于生成非自愿性校正扫视的视觉信号之间的分离。后者完全基于有关目标的视觉信息,而放弃了有关背景的所有信息:视觉证据的次优使用。

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