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在递增和递减的视杆细胞背景光下的颜色辨别

Chromatic discrimination in the presence of incremental and decremental rod pedestals.

作者信息

Cao Dingcai, Zele Andrew J, Pokorny Joel

机构信息

Visual Science Laboratories, Department of Ophthalmology and Visual Science, The University of Chicago, Chicago, Illinois 60637, USA.

出版信息

Vis Neurosci. 2008 May-Jun;25(3):399-404. doi: 10.1017/S0952523808080425.

Abstract

Signals from rods can alter chromatic discrimination. Here, chromatic discrimination ellipses were determined in the presence of rod incremental and decremental pedestals at mesopic light levels. The data were represented in a relative cone Troland space, normalized by discrimination thresholds measured along the cardinal axes without a rod pedestal. In the quadrant of cone space where L-cone relative to M-cone excitation increased, and S-cone excitation decreased, rod incremental pedestals degraded chromatic discrimination, and rod decremental pedestals improved chromatic discrimination. Discrimination in the other three quadrants of cone space was unaffected by the incremental or decremental rod pedestals. A second experiment measured chromatic discrimination under conditions where cone pedestals were matched to the appearances of the incremental and decremental rod pedestals. Based on the matching pedestal data, discrimination then could be measured independently along the cardinal axes using either chromatic [L/(L + M); S/(L + M)] or luminance (L + M) pedestal components. The discrimination data altered by the rod pedestals were similar to chromatic cone pedestals for L/M increment discrimination, but similar to luminance cone pedestals for S decrement discrimination. The results indicated that the rod and cone signals combined differently in determining chromatic discrimination for different post-receptoral pathways.

摘要

视杆细胞发出的信号能够改变颜色辨别能力。在此研究中,在中间视觉光照水平下,分别在存在视杆细胞增量和减量背景光的情况下测定了颜色辨别椭圆。数据表示在相对视锥细胞Troland空间中,通过在没有视杆细胞背景光的情况下沿基本轴测量的辨别阈值进行归一化处理。在视锥细胞空间中,当L视锥细胞相对于M视锥细胞的兴奋增加且S视锥细胞兴奋减少的象限中,视杆细胞增量背景光会降低颜色辨别能力,而视杆细胞减量背景光则会提高颜色辨别能力。视锥细胞空间其他三个象限中的辨别能力不受视杆细胞增量或减量背景光的影响。第二个实验在视锥细胞背景光与视杆细胞增量和减量背景光的外观相匹配的条件下测量颜色辨别能力。基于匹配的背景光数据,然后可以使用颜色[L/(L + M); S/(L + M)]或亮度(L + M)背景光分量沿基本轴独立测量辨别能力。视杆细胞背景光改变的辨别数据在L/M增量辨别方面与颜色视锥细胞背景光相似,但在S减量辨别方面与亮度视锥细胞背景光相似。结果表明,在确定不同感受器后通路的颜色辨别能力时,视杆细胞和视锥细胞信号的组合方式不同。

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