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S-, M- and L-cone contributions to human pupil responses under dim illumination conditions

机译:在昏暗的照明条件下,S-,M-和L-锥对人类瞳孔反应的贡献

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Cones, rods and melanopsin contribute to pupillary responses. However, how each type of cones contributes to pupil responses has been rarely studied. In our study, we investigated pupil responses to S-, M- and L-cone flicker inputs under dim illumination conditions. A four-primary Ganzfeldphotostimulator (DiagnosysColorDome) controlled rod and cone stimulations at a??0.9 log cd/m2, which is below the melanopsin threshold but above the cone detection threshold. Four types of sinusoidally modulated stimuli (1 Hz, 20% contrast) were used: 1) rod stimuli (modulated rod excitation with a constant S- M- and L-cone excitation); 2) S-cone stimuli (modulated S-cone excitation; constant rod, M- and L-cone excitation); 3) M-cone stimuli (modulated M-cone excitation; constant rod, S- and L-cone excitation); and 4) L-cone stimuli (modulated L-cone excitation; constant rod, S- and M-cone excitation). Pupil sizes were measured using an Eyelink II eyetracker (SR Research) with a 250 Hz sampling rate. Pupil amplitudes and phases were derived by Fourier analysis. The results showed that, overall, the cone (S-, M- or L-) stimuli produced smaller responses than rod stimuli, suggesting rod dominance at a??0.9 cd/m2. On the other hand, pupil responses to the M-cone stimuli were larger than for S- or L-cone stimuli. While the M- and L-cone stimuli produced similar response phases (between 0 deg and a??50 deg), the S-cone stimuli had a response phase of approximately 180 deg. These results are consistent with L/M-On and S-OFF response characteristics of ipRGCs measured in primate retinas (Dacey et al., 2005).
机译:视锥,视杆和黑视蛋白有助于瞳孔反应。但是,很少研究每种类型的视锥细胞如何促进瞳孔反应。在我们的研究中,我们研究了在昏暗的照明条件下,瞳孔对S,M和L圆锥闪烁输入的反应。四基色的Ganzfeld光刺激器(DiagnosysColorDome)控制棒和视锥细胞的刺激,其电导率约为0.9 log cd / m2,低于黑视蛋白阈值,但高于视锥细胞检测阈值。使用了四种类型的正弦调制刺激(1 Hz,对比度为20%):1)棒刺激(具有恒定的S-M和L-圆锥激励的调制棒激发); 2)S锥刺激(调制S锥激励;恒定棒,M锥和L锥激励); 3)M锥刺激(调制的M锥激发;恒定棒,S和L锥激发); 4)L锥刺激(调制的L锥激发;恒定棒,S和M锥激发)。使用Eyelink II眼动仪(SR Research)以250 Hz的采样率测量瞳孔大小。通过傅立叶分析得出学生的振幅和相位。结果表明,总体而言,视锥细胞(S-,M-或L-)刺激产生的反应比视杆刺激的反应更小,表明视杆优势在a?0.9 cd / m2。另一方面,瞳孔对M锥刺激的反应大于对S或L锥刺激的反应。虽然M-和L-锥刺激产生相似的响应阶段(介于0度和Δθ50度之间),但S-锥刺激具有约180度的响应阶段。这些结果与在灵长类动物视网膜中测量的ipRGC的L / M-On和S-OFF响应特征一致(Dacey等,2005)。

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