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An electrophysiological study of chromatic processing in the human visual system. Using visual evoked potentials and electroretinograms to study cortical and retinal contributions to human trichromatic vision.

机译:人类视觉系统中色彩处理的电生理研究。使用视觉诱发电位和视网膜电图研究皮质和视网膜对人类三色视觉的贡献。

摘要

The work in this thesis is concerned with examining the retinal and cortical contributions to human trichromatic colour vision. Chromatic processing at the cortex level was examined using visual evoked potentials (VEPs). These responses were elicited by chromatic spot stimuli, which were manipulated in order to selectively activate the chromatic processing system. Chromatic processing at the retinal level was examined using the electroretinograms (ERGs) for which cone isolating stimuli were used to assess the nature of L and M cone inputs to cone-opponent mechanisms.udThe results from the VEP experiments suggest VEP morphology is dependent upon 1) chromatic and or luminance contrast content of the stimulus, 2) stimulus size, and 3) extent to which the chromatic stimulus activates either the L/M or S/(L+M) opponent mechanism. The experiments indicate that chromatic stimulation is indexed by large N1 component and small offset responses. Optimal stimulus size for chromatic isolation is 2-4 ° along L/M axes and 6° along S/(L+M) axis.udFrom the ERG experiments, It has been shown that the low (12Hz) and high (30Hz) temporal frequency flickering stimuli can isolate the chromatic and luminance processing mechanisms in the retina. For low temporal frequency ERGs, the L:M ratio was close to unity and L/M phase difference was close to 180°. For high temporal frequency ERGs, the L:M ratio was more than unity and L/M phase difference was close to 90°. In addition to this, the variation in L:M ratio across the retinal eccentricity was also examined. These results suggest, for the chromatic processing, L:M ratio is close to unity independent of retinal eccentricity and individuals. For the luminance processing, L:M ratio is more than unity and depends upon the region of the retina being stimulated. These findings indicate the maintenance of cone selective input for the chromatic processing across the human retina.
机译:本文的工作涉及检查视网膜和皮层对人类三色彩色视觉的贡献。使用视觉诱发电位(VEP)检查皮质水平的色处理。这些响应是由色斑刺激引起的,对色斑刺激进行了处理以选择性地激活色处理系统。使用视网膜电图(ERG)检查了视网膜水平的色处理,其中使用了视锥分离刺激来评估L和M视锥输入视锥对手机制的性质。 ud VEP实验结果表明,VEP形态取决于1)刺激的色度和/或亮度对比度内容; 2)刺激大小; 3)色度刺激激活L / M或S /(L + M)对抗机制的程度。实验表明,色度刺激由较大的N1分量和较小的偏移响应索引。彩色隔离的最佳刺激大小沿L / M轴为2-4°,沿S /(L + M)轴为6°。 ud从ERG实验中可以看出,低(12Hz)和高(30Hz)时间频率闪烁刺激可以隔离视网膜中的色度和亮度处理机制。对于低时间频率的ERG,L:M比接近于1,L / M相位差接近于180°。对于高时间频率的ERG,L:M比大于1,L / M相位差接近90°。除此之外,还检查了整个视网膜偏心距的L:M比值的变化。这些结果表明,对于彩色处理,L:M比率接近于统一,而与视网膜偏心率和个体无关。对于亮度处理,L:M比大于1,并且取决于要刺激的视网膜区域。这些发现表明在整个人视网膜上进行色处理的视锥细胞选择性输入的维持。

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    Challa Naveen Kumar;

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  • 年度 2011
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  • 正文语种 en
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