Ouhnana Marouane, Kingdom Frederick A A
McGill Vision Research, Department of Ophthalmology, 1650 Cedar Ave., Rm. L11.416, Montreal, QC, H3G 1A4, Canada.
McGill Vision Research, Department of Ophthalmology, 1650 Cedar Ave., Rm. L11.416, Montreal, QC, H3G 1A4, Canada.
Vision Res. 2016 Sep;126:59-68. doi: 10.1016/j.visres.2016.02.005. Epub 2016 Apr 20.
Previous studies have shown that spatial context influences the perceptual interpretation of ambiguous figures such as the Necker cube; however, the properties that mediate the influences of an unambiguous spatial context have yet to be investigated. Here we consider the effect of the motion and position of an unambiguous rotating skeleton cube on the perceived motion direction of an ambiguous rotating Necker cube. We aimed to determine whether the motion of the two figures could be perceptually bound, and if it could, to determine the properties of the binding. We employed a novel procedure analogous to reverse correlation to establish the correlation between the rotation directions of the context and the perceived rotation directions of the target, across 32s trial presentations. Our results showed that changes in the rotation direction of the context triggered above-chance changes in the perceived rotation direction of the target. However, the relative speeds of rotation of the context and target had little effect on the correlations. Position on the other hand had a significant effect: correlations were higher when the context was below compared to when above the target. Our results reveal that change-synchrony not common fate is the factor mediating perceptual motion binding between the context and Necker cube. We also suggest that prior knowledge of friction forces could underlie the position dependency of the context and Necker-cube correlation.
先前的研究表明,空间背景会影响对诸如内克尔立方体等模糊图形的感知解读;然而,介导明确空间背景影响的属性尚未得到研究。在此,我们考察了一个明确的旋转骨架立方体的运动和位置对一个模糊的旋转内克尔立方体的感知运动方向的影响。我们旨在确定这两个图形的运动在感知上是否能够绑定,如果可以,则确定绑定的属性。我们采用了一种类似于反向关联的新颖程序,在32秒的试验呈现过程中,建立背景的旋转方向与目标的感知旋转方向之间的相关性。我们的结果表明,背景旋转方向的变化引发了目标感知旋转方向的高于机遇水平的变化。然而,背景和目标的相对旋转速度对相关性影响不大。另一方面,位置有显著影响:与背景在目标上方时相比,当背景在目标下方时相关性更高。我们的结果表明,变化同步而非共同命运是介导背景与内克尔立方体之间感知运动绑定的因素。我们还提出,摩擦力的先验知识可能是背景与内克尔立方体相关性位置依赖性的基础。