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对比度适应的空间选择性:模型与数据

Spatial selectivity of contrast adaptation: models and data.

作者信息

Georgeson M A, Harris M G

出版信息

Vision Res. 1984;24(7):729-41. doi: 10.1016/0042-6989(84)90214-1.

Abstract

Contrast threshold elevation was measured in human observers at a single spatial frequency (4 or 8 c/deg) after adaptation to gratings at different contrasts and spatial frequencies. When plotted against adapting contrast, the threshold elevation functions for different adapting frequencies were neither straight nor parallel, which poses difficulties for the "equivalent contrast transformation". The different functions appear to form a single family, differing by a scaling factor that depends on spatial frequency but is independent of contrast. This is similar to expressing the aftereffect as a proportion of its peak value. A multiple channel, "fatigue" model of adaptation is shown to be consistent with the results, provided the channel shape is appropriate and channels overlap considerably in the frequency domain. Channel bandwidth is estimated at 1.4 octaves, similar to that of cortical cells.

摘要

在人类观察者适应不同对比度和空间频率的光栅后,于单一空间频率(4或8周/度)下测量对比度阈值升高情况。当将其与适应对比度作图时,不同适应频率的阈值升高函数既不是直线也不平行,这给“等效对比度变换”带来了困难。不同的函数似乎形成了一个单一的族,它们之间的差异在于一个取决于空间频率但与对比度无关的缩放因子。这类似于将后效应表示为其峰值的比例。结果表明,一种多通道“疲劳”适应模型与这些结果一致,前提是通道形状合适且通道在频域中相当程度地重叠。通道带宽估计为1.4倍频程,与皮质细胞的带宽相似。

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