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Spectral sensitivity functions of post-receptoral responses in human vision.

机译:人类视觉中受体后反应的光谱敏感性函数。

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摘要

1. Increment threshold illumination levels, It, for visual detection of a one-dimensional, spatially periodic test pattern (i.e. a grating) presented to the right eye have been measured following a period of adaptation to high contrast patterns. The right (test) eye was adapted to a grating, matched in bar-width and orientation to the test grating, and the left eye was adapted to a two-dimensional matrix array of circular spots. It is shown that the value of It is dependent on the spatial and spectral parameters of the spot matrix. 2. The variation of It with change in matrix wavelength, lambda, is greatest for matrix spots of some 10-15 min of arc diameter. 3. Values of It were determined as a function of the matrix wavelength, lambda. Three kinds of spectral response have been observed, each associated with a different stimulus geometry, and each characterized by the wavelength, lambda, for which It is minimum. With an adaptation matrix consisting of coloured spots on a dark surround, It is minimum for values of lambda around 600 nm, whereas with a matrix of dark spots on a coloured surround, the minimum occurs for lambda around 520 nm. The third spectral response is found when a blue test grating is superimposed on a yellow background, conditions under which detection is mediated by the blue-sensitive, pi 1-increment threshold mechanism. In this case, It is minimum for lambda equal to about 450 nm. 4. Three subjects with normal colour vision each give similar spectral responses, but the data for two deuteranopic red-green dichromats deviate significantly from the normal response pattern. 5. The binocular interaction mechanism through which the spot matrix influences threshold detection of the test grating is discussed in relation to electrophysiological and other psychophysical data.
机译:1.递增阈值照明水平,为了视觉检测呈现给右眼的一维,空间周期性测试图案(即,光栅),在适应高对比度图案的一段时间之后进行了测量。右眼(测试)适应于光栅,其条宽和方向与测试光栅匹配,左眼适应于圆形点的二维矩阵阵列。结果表明,It的值取决于点矩阵的空间和光谱参数。 2.对于电弧直径约10-15分钟的基质点,其随基质波长λ的变化而变化最大。 3. It的值确定为矩阵波长λ的函数。已经观察到三种光谱响应,每种光谱响应都与不同的刺激几何形状相关,并且每种特征均以波长λ为特征,对于该波长λ是最小的。对于由深色周围的彩色斑点组成的适应矩阵,对于600 nm附近的λ值最小,而对于深色周围的深色斑点的矩阵,对于520 nm附近的λ最小值最小。当蓝色测试光栅叠加在黄色背景上时,发现第三种光谱响应,在这种条件下,检测是通过对蓝光敏感的pi 1增量阈值机制进行的。在这种情况下,λ等于约450 nm的最小值。 4.具有正常色觉的三名受试者各自给出相似的光谱响应,但是两个氘核红绿色双色差的数据明显偏离正常响应模式。 5.结合电生理学和其他心理物理数据,讨论了点矩阵通过其影响测试光栅的阈值检测的双目相互作用机制。

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