首页> 美国卫生研究院文献>Frontiers in Human Neuroscience >Eye-Tracking Reveals that the Strength of the Vertical-Horizontal Illusion Increases as the Retinal Image Becomes More Stable with Fixation
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Eye-Tracking Reveals that the Strength of the Vertical-Horizontal Illusion Increases as the Retinal Image Becomes More Stable with Fixation

机译:眼动追踪显示随着视网膜图像在固定后变得更加稳定垂直-水平幻觉的强度会增加

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摘要

The closer a line extends toward a surrounding frame, the longer it appears. This is known as a framing effect. Over 70 years ago, Teodor Künnapas demonstrated that the shape of the visual field itself can act as a frame to influence the perceived length of lines in the vertical-horizontal illusion. This illusion is typically created by having a vertical line rise from the center of a horizontal line of the same length creating an inverted T figure. We aimed to determine if the degree to which one fixates on a spatial location where the two lines bisect could influence the strength of the illusion, assuming that the framing effect would be stronger when the retinal image is more stable. We performed two experiments: the visual-field and vertical-horizontal illusion experiments. The visual-field experiment demonstrated that the participants could discriminate a target more easily when it was presented along the horizontal vs. vertical meridian, confirming a framing influence on visual perception. The vertical-horizontal illusion experiment determined the effects of orientation, size and eye gaze on the strength of the illusion. As predicted, the illusion was strongest when the stimulus was presented in either its standard inverted T orientation or when it was rotated 180° compared to other orientations, and in conditions in which the retinal image was more stable, as indexed by eye tracking. Taken together, we conclude that the results provide support for Teodor Künnapas’ explanation of the vertical-horizontal illusion.
机译:线越靠近周围的框架,则显示的时间越长。这称为成帧效果。 70多年前,TeodorKünnapas证明了视野的形状本身可以作为框架,影响垂直-水平错觉中线条的感知长度。通常通过使一条垂直线从相同长度的一条水平线的中心上升而产生一个倒T型图形,从而产生这种错觉。我们的目的是确定假设在视网膜图像更稳定时成帧效果会更强的情况下,固定在两条线平分的空间位置上的程度是否会影响幻觉的强度。我们进行了两个实验:视野和垂直水平错觉实验。视野实验表明,当对象沿水平子午线与垂直子午线显示时,可以更轻松地区分目标,从而确定了构图对视觉的影响。垂直水平幻觉实验确定了方向,大小和视线对幻觉强度的影响。如预测的那样,当刺激以其标准倒T方向或与其他方向相比旋转180°时以及在视网膜图像更稳定的情况下(以眼动追踪为准),这种错觉最强烈。综上所述,我们得出的结论是,这些结果为TeodorKünnapas对垂直-水平错觉的解释提供了支持。

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