首页> 外文期刊>Vision Research: An International Journal in Visual Science >Spatial frequencies used in Landolt C orientation judgments: relation to inferred magnocellular and parvocellular pathways.
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Spatial frequencies used in Landolt C orientation judgments: relation to inferred magnocellular and parvocellular pathways.

机译:Landolt C方向判断中使用的空间频率:与推断的巨细胞和小细胞途径有关。

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摘要

The purpose of this study was to define the spatial frequencies that underlie judgments of Landolt C orientation under test conditions designed to favor either the magnocellular (MC) or parvocellular (PC) pathway. Contrast thresholds of two observers were measured for briefly presented Landolt Cs of four sizes, using steady- and pulsed-pedestal paradigms to bias performance toward the MC and PC pathways, respectively. Contrast thresholds were derived from a two-alternative forced-choice orientation judgment task using the QUEST procedure. The Landolt Cs were either low-pass or high-pass Gaussian filtered with a range of cutoff object spatial frequencies (cycles per letter) to limit their frequency content. Center object frequencies were derived from plots of log contrast threshold for orientation judgments vs. log filter cutoff object frequency. The function relating center object frequency to Landolt C angular subtense was nonlinear on log-log coordinates for both the steady- and pulsed-pedestal paradigms, indicating that different object frequencies were used to judge Landolt C orientation at different optotype sizes. However, the function was substantially steeper under the pulsed-pedestal than under the steady-pedestal paradigm, such that a large change in optotype size produced a relatively small change in retinal spatial frequency (cycles per degree). The pattern of results is consistent with previously reported differences between the spatial contrast sensitivity functions of the inferred MC and PC pathways.
机译:这项研究的目的是在设计有利于大细胞(MC)或小细胞(PC)途径的测试条件下,定义构成Landolt C方向判断的空间频率。简要介绍了四种尺寸的Landolt C,使用稳态和脉冲基座范例分别将性能偏向MC和PC路径,测量了两个观察者的对比度阈值。对比度阈值是使用QUEST程序从两个替代的强制选择方向判断任务得出的。对Landolt Cs进行了低通或高通高斯滤波,并采用了一系列截止对象空间频率(每个字母周期)来限制其频率含量。中心物体频率是从对数阈值对数对比阈值曲线图得出的,该图用于取向判断与对数滤波器截止物体频率之间的关系。在稳态和脉冲基座范式的对数-对数坐标上,中心物体频率与Landolt C角向后关系的函数是非线性的,表明在不同视标大小下,使用不同的物体频率来判断Landolt C的方向。但是,在脉冲基座模式下的功能比在稳定基座模式下的功能要陡得多,因此,视标大小的较大变化会导致视网膜空间频率的变化相对较小(每度周期数)。结果的模式与先前报道的推断的MC和PC通路的空间对比度敏感性函数之间的差异一致。

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