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S 视锥系统对简单和复杂视野适应的时间进程。

Time-course of S-cone system adaptation to simple and complex fields.

作者信息

Shapiro Arthur G, Beere Jennifer L, Zaidi Qasim

机构信息

Department of Psychology, Bucknell University, Lewisburg, PA 17837, USA.

出版信息

Vision Res. 2003 May;43(10):1135-47. doi: 10.1016/s0042-6989(02)00687-9.

Abstract

We examine the temporal nature of adaptation at different stages of the S-cone color system. All lights were restricted to the S-cone-only (a constant L and M) cardinal axis in color space passing through mid-white (W). The observer initially adapted to a steady uniform field with a chromaticity on the -S end of the axis or on the +S end of the axis or a complex field composed of chromaticy -S and +S (+/-S adaptation). The observer then readapted to a steady uniform field of chromaticity W for a variable length of time (i.e., 0, 0.1, 0.25, 0.5, 1.0, or 2.0 s). A probe-flash technique was used to measure S-cone discrimination at various points along the S-cone-only cardinal axis. This allowed estimation of the response of the S-cone system over an extended response range. Following exposure to the -S and +S uniform fields, sensitivity was maximal at or near the chromaticity of the initial adaptation field and decreased linearly away from the adapting point. The shift from +S to W occurred more rapidly than the shift from -S to W; both of these shifts can be described by a multiplicative scaling of the S-cone signal. Following +/-S adaptation the threshold curve initially had a shape similar to that measured following -S adaptation, but returned rapidly to the W adaptation state. The shift following +/-S adaptation cannot be described by the multiplicative model, but can be explained by a change in the shape of the non-linearity. The results suggest the existence of fast post-receptoral processes.

摘要

我们研究了S-锥体颜色系统不同阶段适应的时间特性。所有光都被限制在颜色空间中仅通过中白色(W)的仅S-锥体(恒定的L和M)主色轴上。观察者最初适应于轴的-S端或+S端上具有色度的稳定均匀场,或由色度-S和+S组成的复合场(+/-S适应)。然后观察者重新适应色度为W的稳定均匀场一段可变的时间(即0、0.1、0.25、0.5、1.0或2.0秒)。使用探测闪光技术来测量仅S-锥体主色轴上各个点的S-锥体辨别力。这允许在扩展的响应范围内估计S-锥体系统的响应。在暴露于-S和+S均匀场之后,敏感度在初始适应场的色度处或附近最大,并从适应点线性下降。从+S到W的转变比从-S到W的转变更快;这两种转变都可以通过S-锥体信号的乘法缩放来描述。在+/-S适应之后,阈值曲线最初的形状类似于在-S适应之后测量的形状,但迅速恢复到W适应状态。+/-S适应之后的转变不能用乘法模型来描述,但可以通过非线性形状的变化来解释。结果表明存在快速的感受器后过程。

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