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Covert visual search within and beyond the effective oculomotor range

机译:在有效动眼范围之内和之外的秘密视觉搜索

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Covert spatial attention is tightly coupled to the eye-movement system, but the precise nature of this coupling remains contentious. Recent research has argued that covert attention and overt eye-movements many share a common biological limit, such that covert exogenous orienting of attention is limited to stimuli that fall within the range of possible eye movements (the effective oculomotor range: EOMR). However, this conclusion is based on a single experimental paradigm: The Posner cueing task. Here, we examine the extent to which covert spatial attention is limited to the EOMR in visual search. Exogenous attention was assessed using a feature search task and endogenous attention assessed using a conjunction search task. The tasks were performed monocularly with the dominant eye in the frontal position or abducted by 40°. In the abducted position stimuli in the temporal hemispace could be seen, but could not become the goal of a saccadic eye-movement (i.e. they were beyond the EOMR). In contrast, stimuli in the nasal hemifield remained within the EOMR. We observed a significant effect of eye-abduction on feature search, such that search was slower when targets appeared beyond the EOMR. In contrast, eye-abduction had no effect on search times during conjunction search. Set size did not interact with target location or eye-position. It is concluded that optimal covert orienting of exogenous attention in visual search is restricted to locations within the effective oculomotor range.
机译:隐蔽的空间注意力与眼动系统紧密耦合,但是这种耦合的精确性仍然存在争议。最近的研究认为,秘密注意力和明显的眼球运动有一个共同的生物学极限,因此,秘密的外源性注意力定向仅限于在可能的眼球运动范围内的刺激(有效动眼范围:EOMR)。但是,此结论基于单个实验范式:波斯纳提示任务。在这里,我们研究了视觉搜索中隐蔽空间的注意力限于EOMR的程度。使用特征搜索任务评估外源注意力,使用联合搜索任务评估内源注意力。任务用占优势的眼睛单眼进行,或将其外展40°。在被绑架的位置,可以看到颞半空间的刺激,但不能成为眼球运动的目标(即它们不在EOMR范围内)。相反,鼻半球中的刺激仍保留在EOMR中。我们观察到引诱眼睛对特征搜索的显着影响,因此当目标出现在EOMR之外时,搜索速度会变慢。相反,在联合搜索过程中,诱眼对搜索时间没有影响。场景大小与目标位置或眼睛位置没有交互作用。结论是,视觉搜索中外源注意力的最佳隐蔽定向仅限于有效动眼范围内的位置。

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