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Distractor effects on saccade trajectories: a comparison of prosaccades, antisaccades, and memory-guided saccades

机译:干扰因素对扫视轨迹的影响:扫视,反扫视和记忆引导扫视的比较

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The present study investigated the contribution of the presence of a visual signal at the saccade goal on saccade trajectory deviations and measured distractor-related inhibition as indicated by deviation away from an irrelevant distractor. Performance in a prosaccade task where a visual target was present at the saccade goal was compared to performance in an anti- and memory-guided saccade task. In the latter two tasks no visual signal is present at the location of the saccade goal. It was hypothesized that if saccade deviation can be ultimately explained in terms of relative activation levels between the saccade goal location and distractor locations, the absence of a visual stimulus at the goal location will increase the competition evoked by the distractor and affect saccade deviations. The results of Experiment 1 showed that saccade deviation away from a distractor varied significantly depending on whether a visual target was presented at the saccade goal or not: when no visual target was presented, saccade deviation away from a distractor was increased compared to when the visual target was present. The results of Experiments 2–4 showed that saccade deviation did not systematically change as a function of time since the offset of the target. Moreover, Experiments 3 and 4 revealed that the disappearance of the target immediately increased the effect of a distractor on saccade deviations, suggesting that activation at the target location decays very rapidly once the visual signal has disappeared from the display.
机译:本研究调查了扫视目标上视觉信号的存在对扫视轨迹偏离的影响,并通过远离无关干扰物的偏离来测量与干扰物相关的抑制。将在视觉目标出现在扫视目标上的扫视任务中的性能与在反导和记忆引导的扫视任务中的性能进行了比较。在后两个任务中,扫视目标的位置没有视觉信号。假设如果可以根据扫视目标位置和干扰源位置之间的相对激活水平来最终解释扫视偏离,则在目标位置缺少视觉刺激将增加干扰因素引起的竞争并影响扫视偏离。实验1的结果表明,远离干扰物的扫视角偏差取决于视目标是否出现在视镜目标上而有显着变化:当不存在视觉目标时,与干扰物相比,远离干扰物的视镜斜视与观察者相比增大目标存在。实验2–4的结果表明,自目标偏移以来,扫视角偏差没有随时间而系统地变化。此外,实验3和4揭示了目标物的消失会立即增加干扰物对扫视角偏离的影响,这表明一旦视觉信号从显示器上消失,目标物位置的激活就会迅速衰减。

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