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旁中央凹运动感知中的倾斜效应。

An oblique effect in parafoveal motion perception.

作者信息

Coletta N J, Segu P, Tiana C L

机构信息

College of Optometry, University of Houston, TX 77204-6052.

出版信息

Vision Res. 1993 Dec;33(18):2747-56. doi: 10.1016/0042-6989(93)90233-m.

Abstract

An observer's ability to discriminate the angular direction of a moving grating depends on the grating orientation. Observers can more accurately judge the angular direction of vertical or horizontal gratings than oblique gratings. We discovered that this oblique effect becomes very large at high spatial frequencies in the parafovea. Perceived direction was quantified with a direction matching task at spatial frequencies ranging from 7.6 to 22.6 c/deg. As spatial frequency increased, direction matches of oblique gratings deviated away from the diagonal and towards vertical or horizontal axes. Subjects reported that the higher spatial frequency gratings appeared as grainy noise, particularly at oblique orientations. Our results indicate that, in the parafovea, subjects perceive movement of high spatial frequencies mainly along principal meridians. One possible explanation for this effect is that the high frequency patterns are aliased by the irregular mosaic of parafoveal cones. The aliasing noise generated by irregular sampling contains spatial energy at all orientations, but perhaps only vertical and horizontal components of the noise are visible to the observer.

摘要

观察者辨别移动光栅角方向的能力取决于光栅的方向。观察者对垂直或水平光栅角方向的判断比倾斜光栅更准确。我们发现,在中央凹旁的高空间频率下,这种倾斜效应变得非常大。通过在7.6至22.6周/度的空间频率下进行方向匹配任务来量化感知方向。随着空间频率的增加,倾斜光栅的方向匹配偏离对角线并朝向垂直或水平轴。受试者报告说,较高空间频率的光栅看起来像颗粒状噪声,特别是在倾斜方向上。我们的结果表明,在中央凹旁,受试者主要沿主要子午线感知高空间频率的运动。对此效应的一种可能解释是,高频图案被中央凹旁视锥细胞的不规则镶嵌所混淆。由不规则采样产生的混淆噪声在所有方向上都包含空间能量,但也许观察者只能看到噪声的垂直和水平分量。

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