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眼跳抑制与远程干扰效应:一种机制还是两种?

Saccadic inhibition and the remote distractor effect: One mechanism or two?

作者信息

Bompas Aline, Sumner Petroc

出版信息

J Vis. 2015;15(6):15. doi: 10.1167/15.6.15.

Abstract

It has been hotly debated whether a single mechanism underlies two established and highly robust oculomotor phenomena thought to index the competitive nature of eye movement plans: the remote distractor effect and saccadic inhibition (SI). It has been suggested that a transient mechanism underlying SI would not be able to account for the shift in the saccade latency distribution produced by early distractors (e.g., those appearing 60 ms before target onset) without additional assumptions or a more sustained source of inhibition. Here we tested this prediction with a model previously optimized to capture SI for late distractors. Where behavioral studies have intermingled stimulus onset asynchronies (SOAs) within the same block, the model captures the pattern of RDEs and SI effects with no parameter changes. Where SOAs have been blocked behaviorally, the pattern of RDEs can also be captured by the same model architecture, but requires changes to the inputs of the model between SOAs. Such changes plausibly reflect likely changes in participants' expectations and attentional strategy across block types.

摘要

一种单一机制是否构成了两种既定且高度稳健的眼球运动现象的基础,这一现象被认为反映了眼动计划的竞争本质,即远程干扰效应和眼跳抑制(SI),这一问题一直存在激烈争论。有人认为,SI背后的瞬态机制如果没有额外的假设或更持续的抑制源,将无法解释早期干扰物(例如,在目标出现前60毫秒出现的干扰物)所导致的眼跳潜伏期分布的变化。在这里,我们用一个先前经过优化以捕捉晚期干扰物的SI的模型来检验这一预测。在行为研究中,同一实验块内混合了刺激起始异步(SOA),该模型在不改变参数的情况下捕捉了远程干扰效应(RDE)和SI效应的模式。在行为上对SOA进行了分块处理的情况下,RDE的模式也可以被相同的模型架构捕捉,但需要在不同的SOA之间改变模型的输入。这种变化可能反映了参与者在不同实验块类型之间预期和注意力策略的可能变化。

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