首页> 外文期刊>The Journal of Physiology >Spectrally opponent inputs to the human luminance pathway: slow +M and -L cone inputs revealed by intense long-wavelength adaptation.
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Spectrally opponent inputs to the human luminance pathway: slow +M and -L cone inputs revealed by intense long-wavelength adaptation.

机译:人类亮度路径的光谱对手输入:强烈的长波长适应显示出缓慢的+ M和-L视锥输入。

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The nature of the inputs to achromatic luminance flicker perception was explored psychophysically by measuring middle- (M-) and long-wavelength-sensitive (L-) cone modulation sensitivities, M- and L-cone phase delays, and spectral sensitivities as a function of temporal frequency. Under intense long-wavelength adaptation, the existence of multiple luminance inputs was revealed by substantial frequency-dependent changes in all three types of measure. Fast (f) and slow (s) M-cone input signals of the same polarity (+sM and +fM) sum at low frequencies, but then destructively interfere near 16 Hz because of the delay between them. In contrast, fast and slow L-cone input signals of opposite polarity (-sL and +fL) cancel at low frequencies, but then constructively interfere near 16 Hz. Although these slow, spectrally opponent luminance inputs (+sM and -sL) would usually be characterized as chromatic, and the fast, non-opponent inputs (+fM and +fL) as achromatic, both contribute to flicker photometric nulls without producing visible colour variation. Although its output produces an achromatic percept, the luminance channel has slow, spectrally opponent inputs in addition to the expected non-opponent ones. Consequently, it is not possible in general to silence this channel with pairs of 'equiluminant' alternating stimuli, since stimuli equated for the non-opponent luminance mechanism (+fM and +fL) may still generate spectrally opponent signals (+sM and +sL).
机译:通过测量中(M-)和长波长敏感(L-)锥调制灵敏度,M和L-圆锥相位延迟以及光谱灵敏度作为函数,从心理上探索了消色差亮度闪烁感知输入的性质。时间频率。在强烈的长波长适应下,在所有三种类型的测量中,频率依赖性的显着变化揭示了多个亮度输入的存在。极性相同(+ sM和+ fM)的快速(f)和慢速(s)M-cone输入信号在低频时相加,但由于它们之间的延迟而在16 Hz附近产生破坏性干扰。相反,相反极性(-sL和+ fL)的快速和慢速L锥输入信号在低频时会抵消,但在16 Hz附近会产生相长干扰。尽管这些缓慢的,光谱上相对的亮度输入(+ sM和-sL)通常被表征为色度,而快速的,非对手的输入(+ fM和+ fL)被表征为消色差,但两者均会导致闪烁的光度零值而不会产生可见的颜色变异。尽管其输出产生消色差感知,但除了预期的非对手输入之外,亮度通道还具有较慢的,频谱上相反的输入。因此,通常不可能用成对的“等光体”交替刺激使该通道静音,因为等同于非对手亮度机制的刺激(+ fM和+ fL)可能仍会产生频谱上相反的信号(+ sM和+ sL )。

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