Opt Express. 2021 Oct 25;29(22):35022-35037. doi: 10.1364/OE.433319.
When the input colors of the left and right eyes are different from one another, binocular rivalry may occur. According to Hering theory, opponent colors would have the most significant tendency for rivalry. However, binocular color fusion still occurs under the condition that each eye's opponent chromatic responses do not exceed a specific chromatic fusion limit (CFL). This paper detects the binocular chromatic fusion limit for opposite colors within a conventional 3D display color gamut. We conducted a psychophysical experiment to quantitatively measure the binocular chromatic fusion limit on four opposite color directions in the CIELAB color space. Due to color inconsistency between eyes may affect the binocular color fusion, the experiment was divided into two sessions by swapping stimulation colors of left and right eyes. There were 5 subjects and they each experienced 320 trials. By analyzing the results, we used ellipses to quantify the chromatic fusion limits for opposing colors. The average semi-major axis of the ellipses is 27.55 ∗, and the average semi-minor axis is 16.98 ∗. We observed that the chromatic fusion limit varies with the opposite color direction: the CFL on RedBlue-GreenYellow direction is greater than that on Red-Green direction, the latter being greater than that on Yellow-Blue direction and the CFL on RedYellow-GreenBlue direction is smallest. Furthermore, we suggested that the chromatic fusion limit is independent of the distribution of cells, and there is no significant change in the fusion ellipse boundaries after swapping left and right eye colors.
当左右眼的输入颜色不同时,可能会发生双眼竞争。根据黑林理论,对颜色会有最显著的竞争倾向。然而,在每个眼睛的对手色觉响应不超过特定的色觉融合极限 (CFL) 的情况下,仍然会发生双眼颜色融合。本文在传统的 3D 显示色域内检测了相反颜色的双眼色觉融合极限。我们进行了一项心理物理实验,在 CIELAB 颜色空间中定量测量了四个相反颜色方向的双眼色觉融合极限。由于眼睛之间的颜色不一致可能会影响双眼颜色融合,因此实验通过交换左右眼的刺激颜色分为两个阶段进行。有 5 名受试者,他们每人经历了 320 次试验。通过分析结果,我们使用椭圆来量化相反颜色的色觉融合极限。椭圆的平均半长轴为 27.55 ∗,平均半短轴为 16.98 ∗。我们观察到色觉融合极限随相反颜色方向而变化:在 RedBlue-GreenYellow 方向上的 CFL 大于在 Red-Green 方向上的 CFL,后者大于在 Yellow-Blue 方向上的 CFL,而在 RedYellow-GreenBlue 方向上的 CFL 最小。此外,我们认为色觉融合极限与细胞分布无关,并且在交换左右眼颜色后,融合椭圆边界没有明显变化。