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Spatial frequency specific interaction of dot patterns and gratings.

机译:点图案和光栅的空间频率特定相互作用。

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摘要

Adaptation to patterns of paired random dots produces loss of contrast sensitivity to sinusoidal luminance gratings oriented perpendicularly to the dot-pair direction. This adaptation loss is spatial frequency- and orientation-specific and varies with dot-pair separation in a manner predictable from the Fourier spectra of the stimuli and observed characteristics of the visual system. These results support the idea that the visual system acts as a periodicity analyzer with known restrictions and cannot be accounted for by a feature-detector model. When the bars of the test gratings are aligned in the dot-pair direction, there is no adaptational loss at any frequency despite the fact that the adaptation pattern contains significant spectral power at all frequencies in this orientation. This lack of adaptation may be due to inhibitory interactions among channels or to nonlinear effects within local receptive fields.
机译:适应成对的随机点的图案会导致对垂直于点对方向定向的正弦亮度光栅的对比度敏感度降低。这种适应损失是空间频率和方向特定的,并以点对间距变化,这种变化可以根据刺激的傅立叶光谱和观察到的视觉系统特征来预测。这些结果支持以下观点:视觉系统充当具有已知限制的周期性分析器,并且不能由特征检测器模型解释。当测试光栅的条在点对方向上对齐时,尽管自适应模式在该方向上的所有频率上都包含明显的频谱功率,但在任何频率下都没有自适应损耗。这种缺乏适应性可能是由于通道之间的抑制性相互作用或局部感受野内的非线性效应所致。

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