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通过“瑞士奶酪”刺激,在整个北斗七星函数中揭示了双眼和空间的对比度总和。

Contrast summation across eyes and space is revealed along the entire dipper function by a "Swiss cheese" stimulus.

作者信息

Meese Tim S, Baker Daniel H

机构信息

School of Life and Health Sciences, Aston University, Birmingham, UK.

出版信息

J Vis. 2011 Jan 27;11(1):23. doi: 10.1167/11.1.23.

Abstract

Previous contrast discrimination experiments have shown that luminance contrast is summed across ocular (T. S. Meese, M. A. Georgeson, & D. H. Baker, 2006) and spatial (T. S. Meese & R. J. Summers, 2007) dimensions at threshold and above. However, is this process sufficiently general to operate across the conjunction of eyes and space? Here we used a "Swiss cheese" stimulus where the blurred "holes" in sine-wave carriers were of equal area to the blurred target ("cheese") regions. The locations of the target regions in the monocular image pairs were interdigitated across eyes such that their binocular sum was a uniform grating. When pedestal contrasts were above threshold, the monocular neural images contained strong evidence that the high-contrast regions in the two eyes did not overlap. Nevertheless, sensitivity to dual contrast increments (i.e., to contrast increments in different locations in the two eyes) was a factor of ∼1.7 greater than to single increments (i.e., increments in a single eye), comparable with conventional binocular summation. This provides evidence for a contiguous area summation process that operates at all contrasts and is influenced little, if at all, by eye of origin. A three-stage model of contrast gain control fitted the results and possessed the properties of ocularity invariance and area invariance owing to its cascade of normalization stages. The implications for a population code for pattern size are discussed.

摘要

先前的对比度辨别实验表明,在阈值及以上时,亮度对比度在眼内(T. S. 米斯、M. A. 乔治森和D. H. 贝克,2006年)和空间(T. S. 米斯和R. J. 萨默斯,2007年)维度上进行累加。然而,这个过程是否足够通用,能够在眼睛和空间的结合处起作用呢?在这里,我们使用了一种“瑞士奶酪”刺激,其中正弦波载体中的模糊“洞”与模糊的目标(“奶酪”)区域面积相等。单眼图像对中目标区域的位置在两眼之间相互交错,使得它们的双眼总和是一个均匀的光栅。当背景对比度高于阈值时,单眼神经图像包含有力证据表明两只眼中的高对比度区域不重叠。尽管如此,对双眼对比度增量(即两眼不同位置的对比度增量)的敏感度比对单眼增量(即单眼的增量)的敏感度大约高1.7倍,这与传统的双眼总和相当。这为一个连续区域求和过程提供了证据,该过程在所有对比度下都起作用,并且几乎不受起源眼的影响。一个对比度增益控制的三阶段模型拟合了结果,并且由于其归一化阶段的级联而具有眼不变性和面积不变性的特性。文中讨论了对图案大小的群体编码的影响。

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