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工作负荷和空间参照可用性如何塑造视空间工作记忆中的眼动耦合。

How workload and availability of spatial reference shape eye movement coupling in visuospatial working memory.

机构信息

Creative Cognition Lab, Institute of Psychology, University of Graz, Graz, Austria.

Cognitive Psychology & Neuroscience, Institute of Psychology, University of Graz, Graz, Austria.

出版信息

Cognition. 2024 Aug;249:105815. doi: 10.1016/j.cognition.2024.105815. Epub 2024 May 17.

Abstract

Eyes are active in memory recall and visual imagination, yet our grasp of the underlying qualities and factors of these internally coupled eye movements is limited. To explore this, we studied 50 participants, examining how workload, spatial reference availability, and imagined movement direction influence internal coupling of eye movements. We designed a visuospatial working memory task in which participants mentally moved a black patch along a path within a matrix and each trial involved one step along this path (presented via speakers: up, down, left, or right). We varied workload by adjusting matrix size (3 × 3 vs. 5 × 5), manipulated availability of a spatial frame of reference by presenting either a blank screen (requiring participants to rely solely on their mental representation of the matrix) or spatial reference in the form of an empty matrix, and contrasted active task performance to two control conditions involving only active or passive listening. Our findings show that eye movements consistently matched the imagined movement of the patch in the matrix, not driven solely by auditory or semantic cues. While workload influenced pupil diameter, perceived demand, and performance, it had no observable impact on internal coupling. The availability of spatial reference enhanced coupling of eye movements, leading more frequent, precise, and resilient saccades against noise and bias. The absence of workload effects on coupled saccades in our study, in combination with the relatively high degree of coupling observed even in the invisible matrix condition, indicates that eye movements align with shifts in attention across both visually and internally represented information. This suggests that coupled eye movements are not merely strategic efforts to reduce workload, but rather a natural response to where attention is directed.

摘要

眼睛在记忆回忆和视觉想象中很活跃,但我们对这些内部耦合眼球运动的潜在性质和因素的理解是有限的。为了探索这一点,我们研究了 50 名参与者,研究了工作负荷、空间参照可用性和想象运动方向如何影响眼球运动的内部耦合。我们设计了一个视空间工作记忆任务,参与者在矩阵内的路径上用黑色补丁进行心理移动,每个试验都涉及路径上的一步(通过扬声器呈现:上、下、左、右)。我们通过调整矩阵大小(3×3 与 5×5)来改变工作负荷,通过呈现空白屏幕(要求参与者仅依赖于他们对矩阵的心理表示)或空间参考形式的空矩阵来操纵空间参考的可用性,并将主动任务表现与仅涉及主动或被动听力的两种对照条件进行对比。我们的研究结果表明,眼球运动始终与矩阵中补丁的想象运动相匹配,而不仅仅是由听觉或语义线索驱动。虽然工作负荷会影响瞳孔直径、感知需求和表现,但对内部耦合没有明显影响。空间参考的可用性增强了眼球运动的耦合,使更多的、更精确的和更有弹性的扫视能够抵抗噪声和偏差。在我们的研究中,耦合扫视不受工作负荷影响,即使在看不见的矩阵条件下也观察到相对较高的耦合程度,这表明眼球运动与注意力在视觉和内部表示信息之间的转移是一致的。这表明,耦合的眼球运动不仅仅是减少工作负荷的策略性努力,而是对注意力指向位置的自然反应。

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