McKeefry Declan J, Murray Ian J, Parry Neil R A
Vision Science Research Group, School of Life Sciences, University of Bradford, UK.
J Opt Soc Am A Opt Image Sci Vis. 2007 Oct;24(10):3168-79. doi: 10.1364/josaa.24.003168.
Using an asymmetric color matching technique, we measured the perceived changes that occur in the saturation and hue of colored stimuli at different eccentricities within the central 25 degrees of the human retina in nine color-normal subjects. A cone-opponent-based vector model was used to compute the activity of the L-M and S-(L+M) channels. The results show that a large proportion of the shifts in saturation and hue that occur with increasing retinal eccentricity are mirrored by decreased activity of the L-M channel. In comparison, the contribution of the S cone-opponent system undergoes relatively little change within the central 20 degrees . In addition, we also found that changes in saturation and hue are different from each other in terms of their variation across color space and their variation with stimulus size. Our findings suggest that perceived shifts in saturation and hue are mediated largely via the reduction in activation of the L-M cone-opponent channel but that saturation and hue might be subject to different retinal and/or cortical influences that contribute to their differing size dependencies in the peripheral retina.
我们采用非对称颜色匹配技术,测量了9名色觉正常受试者在人眼视网膜中央25度范围内不同偏心度下彩色刺激的饱和度和色调的感知变化。基于锥体拮抗的向量模型用于计算L-M和S-(L+M)通道的活性。结果表明,随着视网膜偏心度增加而出现的饱和度和色调的大部分变化,都与L-M通道活性降低相对应。相比之下,S锥体拮抗系统的贡献在中央20度范围内变化相对较小。此外,我们还发现,饱和度和色调在整个颜色空间的变化以及随刺激大小的变化方面彼此不同。我们的研究结果表明,饱和度和色调的感知变化主要是通过L-M锥体拮抗通道激活的减少来介导的,但饱和度和色调可能受到不同的视网膜和/或皮层影响,这导致它们在外周视网膜中具有不同的大小依赖性。