首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Artifacts in spatiochromatic stimuli due to variations in preretinal absorption and axial chromatic aberration: implications for color physiology
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Artifacts in spatiochromatic stimuli due to variations in preretinal absorption and axial chromatic aberration: implications for color physiology

机译:视网膜前吸收和轴向色差变化引起的时空刺激伪像:对颜色生理的影响

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The spatiochromatic receptive-field structure of neurons in the macaque visual system has been studied almost exclusively with stimuli based on the human foveal cone fundamentals of Smith and Pokorny [Vision Res. 15, 161 (1975)] and generated on cathode ray tube displays. In the current study the artifacts evoked by cone-isolating, spatially structured stimuli due to variations in the eye's preretinal absorption characteristics and axial chromatic aberration are quantified. In addition, the luminance artifacts evoked by nominally isoluminant sinusoidal grating stimuli due to the same factors are quantified. The results indicate that the spatio-chromatic stimuli commonly employed to map receptive fields of neurons at eccentricities >10 deg are especially prone to artifacts and that these artifacts are maximal for the high-contrast S-cone-isolating stimuli that are often used. On the basis of these simulations, a method is introduced that improves spatiochromatic receptive-field estimates by compensating for response contributions from the incompletely silenced cone mosaics during cone-isolating stimulation.
机译:猕猴视觉系统中神经元的时空色接收域结构几乎完全是基于Smith和Pokorny的人中央凹圆锥基本原理进行刺激研究的。 15、161(1975)]和在阴极射线管显示器上产生。在当前的研究中,量化了由于眼睛的视网膜前吸收特性和轴向色差的变化而引起的锥体隔离,空间结构刺激引起的伪影。另外,量化了由于相同因素而由名义上等亮度的正弦光栅刺激引起的亮度伪影。结果表明,通常用于映射偏心率> 10度的神经元的感受野的时空色刺激尤其容易出现伪影,并且这些伪影对于经常使用的高对比度S锥隔离刺激最大。在这些模拟的基础上,介绍了一种方法,该方法通过补偿视锥分离刺激过程中不完全静音的视锥镶嵌体的响应贡献来改善时空色接收域估计。

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