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Effect of stimulus intensity on the sizes of chromatic perceptive fields

机译:刺激强度对色觉场大小的影响

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The effects of intensity on chromatic perceptive field size were investigated along the horizontal meridian at 10 deg temporal eccentricity by manipulating stimulus intensity from 0.3 to 3.3 log trolands. Following light adaptation, observers described the hue and saturation of monochromatic stimuli (440-660 nm, in 10 nm steps) for a series of test sizes (0.098-3 deg) presented along the time period associated with the cone plateau of the dark-adaptation function. Perceptive field sizes of the four elemental hues (red, green, yellow, and blue) and the saturation component were estimated by three observers at each intensity level for each wavelength. In general, perceptive field sizes of blue and red are the smallest, and yellow and green are the largest. Furthermore, perceptive field sizes of all four hues decrease with increasing stimulus intensity, though the absolute change is largest for green and yellow. The decrease in size with increase in intensity cannot be completely explained in terms of saturation or rod signals and is likely, then, attributable to a cone-based mechanism.
机译:通过操纵从0.3到3.3 log trolands的刺激强度,沿着水平子午线在10度时间偏心率下研究了强度对色觉感知场大小的影响。进行光适应后,观察者描述了沿与暗锥锥高原相关的时间段呈现的一系列测试尺寸(0.098-3度)的单色刺激(440-660 nm,以10 nm为步长)的色调和饱和度。适应功能。三种元素色相(红色,绿色,黄色和蓝色)和饱和度分量的感知场大小是由三个观察者在每个波长的每个强度级别下估计的。通常,蓝色和红色的感知场大小最小,黄色和绿色的感知场大小最大。此外,尽管绿色和黄色的绝对变化最大,但所有四种色调的感知场大小都会随着刺激强度的增加而减小。随着强度的增加,尺寸的减小无法完全根据饱和度或棒状信号进行解释,因此很可能归因于基于圆锥的机制。

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