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The physiological basis of heterochromatic flicker photometry demonstrated in the ganglion cells of the macaque retina.

机译:在猕猴视网膜的神经节细胞中证实了异色闪烁光度法的生理基础。

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摘要

1. Heterochromatic flicker photometry is a way of measuring the spectral sensitivity of the human eye. Two lights of different colour are sinusoidally alternated at, typically, 10-20 Hz, and their relative intensities adjusted by the observer until the sensation of flicker is minimized. This technique has been used to define the human photopic luminosity, or V lambda, function on which photometry is based. 2. We have studied the responses of macaque retinal ganglion cells using this stimulus paradigm. The responses of the phasic ganglion cells go through a minimum at relative radiances very similar to that predicted from the V lambda function. At this point, defined as equal luminance, an abrupt change in response phase was observed. A small residual response at twice the flicker frequency was apparent under some conditions. 3. The spectral sensitivity of parafoveal phasic cells measured in this way corresponded very closely to that of human observers minimizing flicker on the same apparatus. 4. Minima in phasic cell activity were independent of flicker frequency, as is the case in the psychophysical task. 5. The response minima of phasic cells obey the laws of additivity and transitivity which are important characteristics of heterochromatic flicker photometry. 6. As the relative intensities of the lights were altered responses of tonic, spectrally opponent cells usually underwent a gradual phase change with vigorous responses at equal luminance. The responses of tonic cells treated individually or as a population could not be related to the V lambda function in any meaningful way. 7. We conclude that the phasic, magnocellular cell system of the primate visual pathway underlies performance in the psychophysical task of heterochromatic flicker photometry. It is likely that other tasks in which spectral sensitivity conforms to the V lambda function also rely on this cell system.
机译:异色闪烁光度法是一种测量人眼光谱灵敏度的方法。两种不同颜色的光通常以10-20 Hz的频率进行正弦交替,观察者会调整它们的相对强度,直到闪烁感最小。该技术已被用来定义光度学所基于的人类视光度或V lambda函数。 2.我们使用这种刺激范例研究了猕猴视网膜神经节细胞的反应。在相对辐射度下,相神经节细胞的反应经历了最小值,该相对辐射度与根据V lambda函数预测的相类似。在这一点上,定义为相等的亮度,观察到响应相位突然改变。在某些条件下,可以看到两倍闪烁频率的少量残留响应。 3.用这种方法测量的副凹旁相细胞的光谱敏感性与人类观察者的光谱敏感性非常接近,从而使同一仪器上的闪烁最小。 4.如在心理物理任务中那样,相细胞活动的最小值与闪烁频率无关。 5.相细胞的最小响应遵循可加性和可传递性定律,这是异色闪烁光度法的重要特征。 6.由于光的相对强度改变了对进补的反应,因此光谱上相反的细胞通常会经历逐渐的相位变化,并在相等的亮度下产生强烈的反应。单独或作为群体处理的滋补细胞的反应在任何有意义的方式上都不会与V lambda功能相关。 7.我们得出结论,灵长类动物视觉通路的阶段性,巨细胞细胞系统是异色闪烁光度法在心理生理任务中的表现的基础。光谱灵敏度符合V lambda函数的其他任务也可能也依赖于此单元系统。

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