Hibino H
Psychology Department, College of Arts and Sciences, Chiba University, Japan.
Vision Res. 1992 Oct;32(10):1955-64. doi: 10.1016/0042-6989(92)90055-n.
Using the hue cancellation technique, I measured the spectral sensitivities of red-green (r-g) and yellow-blue (y-b) opponent-color responses of two color-normal observers at 0 (fovea), 3.3, 10, 21, and 31 degrees along the horizontal meridian of the temporal retina. The stimulus size as a function of retinal eccentricity was varied according to the cortical magnification factor. I found that the net spectral sensitivity (i.e. corrected for macular pigment) of the r-g channel was approximately constant as a function of retinal eccentricity. On the other hand, the net spectral sensitivity of the y-b channel was not constant. For the y-b channel I found a constant spectral sensitivity as a function of eccentricity when no macular correction was made. This means that the y-b system changes its yellow and blue responses with eccentricity to counterbalance the effects of macular pigment.
使用色调消除技术,我测量了两名色觉正常的观察者在颞侧视网膜水平子午线沿0(中央凹)、3.3、10、21和31度处红-绿(r-g)和黄-蓝(y-b)对立色反应的光谱敏感度。作为视网膜偏心率函数的刺激大小根据皮质放大因子而变化。我发现r-g通道的净光谱敏感度(即针对黄斑色素进行校正后)作为视网膜偏心率的函数大致恒定。另一方面,y-b通道的净光谱敏感度并不恒定。对于y-b通道,当不进行黄斑校正时,我发现其光谱敏感度作为偏心率的函数是恒定的。这意味着y-b系统会随着偏心率改变其黄色和蓝色反应,以抵消黄斑色素的影响。