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Evidence for the contribution of S cones to the detection of flicker brightness and red-green

机译:S锥体对闪烁亮度和红绿色检测的贡献的证据

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We were interested in the question of how cones contribute to the detection of brightness, red-green, and blue-yellow. The linear combination of cone signals contributing to flicker detection was determined by fitting a plane to 64 points (colors) of equal heterochromatic flicker brightness. A small S-cone contribution to flicker brightness of similar amplitude in all five subjects was identified. The ratio of L- to M-cone contribution was found to vary considerably among subjects (1.7-4.1). Chromatic detection thresholds were determined for small patches in the isoluminant plane defined by flicker brightness. These stimuli were presented at an eccentricity of 40 are min. By using color naming at the detection threshold, one can attribute different segments of the resulting detection ellipses to different chromatic mechanisms. Linear approximation of these segments provided an estimate for the contribution of the different cone types to the detection of red-green and blue-yellow. The results are consistent with the hypothesis that S cones contribute to the red-green mechanism with the same sign as that of the contribution from L cones. The blue-yellow mechanism very probably subtracts S-cone contrast from luminance contrast. The detection ellipse can be mapped into a circle in cone difference space. The base of this canonical transformation is a set of three cone fundamentals that differs from previously published estimates. Projecting the circle onto the three cone difference axes produces sinusoidal changes within the respective excitations. We propose that simultaneous sinusoidal changes of equal increment in the three cone difference excitations generate stimuli differing by equal saliency.
机译:我们对锥体如何影响亮度,红绿色和蓝黄色的检测感兴趣。通过将平面拟合到相等的异色闪烁亮度的64个点(颜色)来确定有助于闪烁检测的圆锥信号的线性组合。在所有五个对象中,S-cone对闪烁幅度相似的闪烁亮度的贡献均很小。发现L-与M-圆锥贡献的比例在受试者之间有很大差异(1.7-4.1)。确定由闪烁亮度定义的等光源平面中小块的色检测阈值。这些刺激以40分钟的偏心率呈现。通过在检测阈值处使用颜色命名,可以将所得检测椭圆的不同部分归因于不同的色度机制。这些线段的线性近似为不同圆锥类型对红绿和蓝黄检测的贡献提供了估计。结果与以下假设相符:S锥体对红绿色机理的贡献与L锥体的贡献具有相同的符号。蓝黄色机制很可能会从亮度对比度中减去S锥对比度。可以将检测椭圆映射为圆锥差空间中的一个圆。规范转换的基础是一组三个圆锥体基本原理,这些原理与以前发布的估计有所不同。将圆投影到三个锥差轴上会在各自的激励范围内产生正弦变化。我们提出,在三个锥差激励中,同时增量相等的正弦变化会产生相同显着性的激励。

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