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弱视中的视觉缺陷限制了二阶运动处理的正常模型。

Visual deficits in amblyopia constrain normal models of second-order motion processing.

作者信息

Simmers A J, Ledgeway T, Hutchinson C V, Knox P J

机构信息

Department of Vision Sciences, Glasgow Caledonian University, Glasgow G4 0BA, UK.

出版信息

Vision Res. 2011 Sep 15;51(18):2008-20. doi: 10.1016/j.visres.2011.07.012. Epub 2011 Aug 5.

Abstract

It is well established that amblyopes exhibit deficits in processing first-order (luminance-defined) patterns. This is readily manifest by measuring spatiotemporal sensitivity (i.e. the "window of visibility") to moving luminance gratings. However the window of visibility to moving second-order (texture-defined) patterns has not been systematically studied in amblyopia. To address this issue monocular modulation sensitivity (1/threshold) to first-order motion and four different varieties of second-order motion (modulations of either the contrast, flicker, size or orientation of visual noise) was measured over a five-octave range of spatial and temporal frequencies. Compared to normals amblyopes are not only impaired in the processing of first-order motion, but overall they exhibit both higher thresholds and a much narrower window of visibility to second-order images. However amblyopia can differentially impair the perception of some types of second-order motion much more than others and crucially the precise pattern of deficits varies markedly between individuals (even for those with the same conventional visual acuity measures). For the most severely impaired amblyopes certain second-order (texture) cues to movement in the environment are effectively invisible. These results place important constraints on the possible architecture of models of second-order motion perception in human vision.

摘要

弱视患者在处理一阶(亮度定义)模式时存在缺陷,这一点已得到充分证实。通过测量对移动亮度光栅的时空敏感度(即“可见窗口”),这一点很容易体现出来。然而,弱视患者对移动二阶(纹理定义)模式的可见窗口尚未得到系统研究。为了解决这个问题,在五个八度的空间和时间频率范围内,测量了对一阶运动以及四种不同类型二阶运动(视觉噪声的对比度、闪烁、大小或方向的调制)的单眼调制敏感度(1/阈值)。与正常人相比,弱视患者不仅在一阶运动处理方面受损,而且总体上他们对二阶图像的阈值更高,可见窗口也更窄。然而,弱视对某些类型二阶运动感知的损害程度可能比对其他类型的损害更大,关键是,缺陷的精确模式在个体之间差异显著(即使是那些具有相同传统视力测量值的个体)。对于受损最严重的弱视患者来说,环境中某些二阶(纹理)运动线索实际上是不可见的。这些结果对人类视觉中二阶运动感知模型的可能架构施加了重要限制。

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