Watson A B, Solomon J A
NASA Ames Research Center, Moffett Field, California 94035-1000, USA.
J Opt Soc Am A Opt Image Sci Vis. 1997 Sep;14(9):2379-91. doi: 10.1364/josaa.14.002379.
We have implemented a model of contrast gain and control in human vision that incorporates a number of key features, including a contrast sensitivity function, multiple oriented bandpass channels, accelerating nonlinearities, and a devisive inhibitory gain control pool. The parameters of this model have been optimized through a fit to the recent data that describe masking of a Gabor function by cosine and Gabor masks [J. M. Foley, "Human luminance pattern mechanisms: masking experiments require a new model," J. Opt. Soc. Am. A 11, 1710 (1994)]. The model achieves a good fit to the data. We also demonstrate how the concept of recruitment may accommodate a variant of this model in which excitatory and inhibitory paths have a common accelerating nonlinearity, but which include multiple channels tuned to different levels of contrast.
我们已经在人类视觉中实现了一种对比度增益和控制模型,该模型包含许多关键特征,包括对比度敏感度函数、多个方向带通通道、加速非线性以及一个除法抑制增益控制池。通过拟合最近描述余弦和伽柏掩模对伽柏函数掩蔽的数据 [J. M. 福利,“人类亮度模式机制:掩蔽实验需要一个新模型”,《美国光学学会杂志A》11,1710 (1994)],对该模型的参数进行了优化。该模型与数据拟合良好。我们还展示了募集概念如何适应该模型的一个变体,其中兴奋和抑制路径具有共同的加速非线性,但包括调谐到不同对比度水平的多个通道。