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检测压缩采样光栅的机制。

The mechanisms for detecting compressively sampled gratings.

作者信息

Rainville S J, Kingdom F A

机构信息

McGill Vision Research Unit, Montréal, Québec, Canada.

出版信息

Vision Res. 1997 Dec;37(23):3237-54. doi: 10.1016/s0042-6989(97)00070-9.

Abstract

Contrast thresholds for sine-wave gratings are raised when the gratings are compressively sampled into a set of narrow bright bars on a dark background, even though this method of sampling preserves the mean luminance and contrast of the grating. Burr et al. [(1985). Vision Research, 25, 717-727] suggested threshold elevation was due to localized luminance adaptation to the sample bars, whose average peak luminance necessarily increased when fewer bars per cycle were present. Previously, we reported results using decrement-bar compressively sampled gratings (CSGs), which consist of dark sample bars on a bright background, which favoured the local luminance adaptation hypothesis (Kingdom & Rainville, 1995). Here we report experiments that suggest that this hypothesis is untenable. Using increment-bar CSGs (bright sample bars on a dark background) we found that raising background luminance while holding sample bar luminance constant reduced thresholds by as much as a factor of ten. This suggests that it is the contrast of the bars, rather than their luminance, which determines thresholds. Further experiments showed that CSG detection was facilitated by unsampled grating pedestals, and thresholds were elevated when the fundamental was physically cancelled. This implied that CSGs were detected by the same mechanisms as the unsampled gratings from which they are derived. Finally, we provide evidence for the involvement of a dynamic gain control component for increment-bar CSG detection.

摘要

当正弦波光栅被压缩采样成一组在暗背景上的窄亮条时,其对比度阈值会提高,即使这种采样方法保持了光栅的平均亮度和对比度。伯尔等人[(1985年)。《视觉研究》,25,717 - 727]认为阈值升高是由于对采样条的局部亮度适应,当每个周期的条较少时,其平均峰值亮度必然会增加。此前,我们报告了使用减量条压缩采样光栅(CSG)的结果,该光栅由亮背景上的暗采样条组成,这支持了局部亮度适应假说(金登 & 雷维尔,1995年)。在此我们报告的实验表明该假说站不住脚。使用增量条CSG(暗背景上的亮采样条),我们发现保持采样条亮度不变而提高背景亮度可使阈值降低多达十倍。这表明决定阈值的是条的对比度,而非其亮度。进一步的实验表明,未采样的光栅基座有助于CSG检测,当基频被物理消除时阈值会升高。这意味着CSG是通过与从中导出它们的未采样光栅相同的机制被检测到的。最后,我们提供了证据表明存在一个动态增益控制组件参与增量条CSG检测。

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