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本文引用的文献

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Spatial properties and functional organization of small bistratified ganglion cells in primate retina.灵长类视网膜中小双分层神经节细胞的空间特性和功能组织
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Impulse response of an S-cone pathway in the aging visual system.衰老视觉系统中S锥体通路的冲动响应。
J Opt Soc Am A Opt Image Sci Vis. 2006 Jul;23(7):1570-7. doi: 10.1364/josaa.23.001570.
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Is the S-opponent chromatic sub-system sluggish?S 拮抗色觉子系统是否迟缓?
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Macaque retina contains an S-cone OFF midget pathway.猕猴视网膜包含一条S锥体OFF侏儒通路。
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Spatial summation of S-cone ON and OFF signals: effects of retinal eccentricity.S视锥细胞开信号与关信号的空间总和:视网膜离心度的影响
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Simple reaction times in color space: the influence of chromaticity, contrast, and cone opponency.颜色空间中的简单反应时间:色度、对比度和视锥细胞对立性的影响。
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Fireworks in the primate retina: in vitro photodynamics reveals diverse LGN-projecting ganglion cell types.灵长类视网膜中的“烟花”:体外光动力学揭示多种投射至外侧膝状体的神经节细胞类型。
Neuron. 2003 Jan 9;37(1):15-27. doi: 10.1016/s0896-6273(02)01143-1.
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ON and OFF S-cone pathways have different long-wave cone inputs.开启和关闭的S视锥细胞通路具有不同的长波视锥细胞输入。
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S 锥体通路在检测亮度增加和减少时的脉冲响应。

The impulse response of S-cone pathways in detection of increments and decrements.

作者信息

Shinomori Keizo, Werner John S

机构信息

Department of Information Systems Engineering, Kochi University of Technology, Kami-city, Koichi, Japan.

出版信息

Vis Neurosci. 2008 May-Jun;25(3):341-7. doi: 10.1017/S0952523808080218. Epub 2008 Mar 6.

DOI:10.1017/S0952523808080218
PMID:18321402
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2584150/
Abstract

Impulse response functions (IRFs) were obtained from two-pulse detection thresholds using isoluminant stimuli that produced increments or decrements in S-cone excitation. The pulses were chromatically modulated at constant luminance (based on 18 Hz heterochromatic flicker photometry). Chromatic stimuli were presented as a Gaussian patch (+/-1 SD = 2.3 degrees) in one of four quadrants around a central fixation cross on a CRT screen. Each of the two pulses (6.67 ms) was separated by an inter-stimulus interval (ISI) from 20 to 360 ms. Chromaticity of the pulses was changed from the equal-energy white of the background to a bluish or yellowish color along individually determined tritan lines (based on color matching under strong S-cone adaptation from a 420 nm background superimposed in Maxwellian view). Chromatic detection thresholds were determined by a four-alternative forced-choice method with staircases for each ISI interleaved in each session. Measurements were repeated in at least four sessions for each observer. IRFs were calculated by varying four parameters of an exponentially-damped sinewave. Both S-cone increment and decrement IRFs are characterized by a single excitatory phase and a much longer time course compared with IRFs derived for luminance modulation using the same apparatus and observers. S-cone increment IRFs are faster than S-cone decrement IRFs; the time to peak amplitude of S-cone increment and decrement IRFs is 50-70 and 100-120 ms, respectively. These results were used to derive the temporal contrast sensitivity for human observers of putative ON- and OFF-channels carrying signals from S-cones.

摘要

脉冲响应函数(IRF)通过双脉冲检测阈值获得,使用等亮度刺激,该刺激会使S视锥细胞兴奋产生增加或减少。脉冲在恒定亮度下进行色度调制(基于18Hz的异色闪烁光度法)。色度刺激在阴极射线管屏幕上围绕中央固定十字的四个象限之一中呈现为高斯光斑(±1标准差 = 2.3度)。两个脉冲(6.67毫秒)中的每一个都由20至360毫秒的刺激间隔(ISI)隔开。脉冲的色度从背景的等能量白色沿着单独确定的蓝绿色线变为蓝色或黄色(基于在强S视锥细胞适应下从叠加在麦克斯韦视图中的420nm背景进行颜色匹配)。色度检测阈值通过四选一强制选择法确定,每个ISI的阶梯在每个实验环节中交错进行。每个观察者至少在四个实验环节中重复测量。IRF通过改变指数衰减正弦波的四个参数来计算。与使用相同设备和观察者从亮度调制得出的IRF相比,S视锥细胞增加和减少的IRF都具有单个兴奋相位和长得多的时间进程。S视锥细胞增加的IRF比S视锥细胞减少的IRF更快;S视锥细胞增加和减少的IRF达到峰值幅度的时间分别为50 - 70毫秒和100 - 120毫秒。这些结果被用于推导携带来自S视锥细胞信号的假定ON和OFF通道的人类观察者的时间对比敏感度。