Centre de Recherche en Neurosciences de Lyon (CRNL), Université Claude Bernard Lyon 1, INSERM U1028, Bron, France.
University of Montreal, School of Optometry, Montreal, Quebec, Canada.
J Vis. 2024 Sep 3;24(9):2. doi: 10.1167/jov.24.9.2.
Our aim in this study was to understand how we perform visuospatial comparison tasks by analyzing ocular behavior and to examine how restrictions in macular or peripheral vision disturb ocular behavior and task performance. Two groups of 18 healthy participants with normal or corrected visual acuity performed visuospatial comparison tasks (computerized version of the elementary visuospatial perception [EVSP] test) (Pisella et al., 2013) with a gaze-contingent mask simulating either tubular vision (first group) or macular scotoma (second group). After these simulations of pathological conditions, all participants also performed the EVSP test in full view, enabling direct comparison of their oculomotor behavior and performance. In terms of oculomotor behavior, compared with the full view condition, alternation saccades between the two objects to compare were less numerous in the absence of peripheral vision, whereas the number of within-object exploration saccades decreased in the absence of macular vision. The absence of peripheral vision did not affect accuracy except for midline judgments, but the absence of central vision impaired accuracy across all visuospatial subtests. Besides confirming the crucial role of the macula for visuospatial comparison tasks, these experiments provided important insights into how sensory disorder modifies oculomotor behavior with or without consequences on performance accuracy.
我们在这项研究中的目的是通过分析眼动行为来了解我们如何执行视空间比较任务,并研究黄斑或周边视觉受限如何干扰眼动行为和任务表现。两组 18 名视力正常或矫正正常的健康参与者进行了视空间比较任务(基本视空间知觉测试[EVSP]的计算机版本)(Pisella 等人,2013),使用注视相关的掩蔽模拟管状视觉(第一组)或黄斑暗点(第二组)。在这些病理条件的模拟之后,所有参与者还在全视野下进行了 EVSP 测试,能够直接比较他们的眼动行为和表现。在眼动行为方面,与全视野条件相比,在没有周边视觉的情况下,比较两个物体的交替扫视次数减少,而在没有黄斑视觉的情况下,在物体内部的探索扫视次数减少。除了中线判断外,周边视觉缺失不会影响准确性,但中央视觉缺失会影响所有视空间子测试的准确性。这些实验除了证实黄斑对于视空间比较任务的关键作用外,还为我们提供了有关感官障碍如何在不影响性能准确性的情况下或在其影响下改变眼动行为的重要见解。