Department of Psychological and Brain Sciences, Dartmouth College, NH, USA.
Centre for Vision Research, York University, Toronto, Ontario, Canada.
J Vis. 2022 Nov 1;22(12):16. doi: 10.1167/jov.22.12.16.
When two pre-existing, separated squares are connected by the sudden onset of a bar between them, viewers do not perceive the bar to appear all at once. Instead, they see an illusory morphing of the original squares over time. The direction of this transformational apparent motion (TAM) can be influenced by endogenous attention deployed before the appearance of the connecting bar. Here, we investigated whether the influence of endogenous attention on TAM results from operations over high-level feature-independent shape representations, or instead over lower level shape representations defined by specific visual features. To do so, we tested the influence of endogenous attention on TAM in first- and second-order displays, which shared common shapes but had different shape-defining attributes (luminance and texture contrast, respectively). In terms of both the magnitude of directional bias and timing, we found that endogenous attention exerted a similar influence on both first- and second-order objects. These results imply that endogenous attention biases the perceived direction of TAM by operating on high-level shape representations that are invariant to the low-level visual features that define them. Our results support a four-stage model of TAM, where a feature encoding stage passes a features-specific layout to a parsing stage that forms discrete, high-level meta-featural shapes, which are then matched and visually interpolated over time.
当两个预先存在的、分开的正方形之间突然出现一条连接它们的竖线时,观察者不会看到竖线一下子出现。相反,他们会看到原始正方形随着时间的推移而产生虚幻的变形。这种变形的视运动(TAM)的方向可以受到连接竖线出现之前部署的内源性注意的影响。在这里,我们研究了内源性注意对 TAM 的影响是源自于对高级特征独立形状表示的操作,还是源自于对由特定视觉特征定义的较低水平形状表示的操作。为此,我们在一阶和二阶显示中测试了内源性注意对 TAM 的影响,这些显示共享共同的形状,但具有不同的形状定义属性(分别为亮度和纹理对比度)。就方向偏差的幅度和时间而言,我们发现内源性注意对一阶和二阶物体都施加了类似的影响。这些结果表明,内源性注意通过对不受定义它们的低级视觉特征影响的高级形状表示进行操作,从而偏向 TAM 的感知方向。我们的结果支持 TAM 的四阶段模型,其中特征编码阶段将特征特定的布局传递给解析阶段,该阶段形成离散的、高级的元特征形状,然后随着时间的推移进行匹配和视觉插值。