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Dynamic contrast perception assessed by pattern masking

机译:通过图案遮罩评估动态对比度感知

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The perceived contrast of a pulsed grating varies markedly with the exposure duration and spatial frequency of the grating. We studied dynamic changes in perceived grating contrast with a pattern-masking paradigm. We measured masking of a brief, localized test pattern (a D6 stimulus, 30 ms in duration) by fixed-contrast cosine grating patterns of varying duration (50-500 ms). The cosine mask pattern had spatial frequency of either 1 or 6 cycles per degree (cpd) at a contrast of 0.3. The D6 test pattern was centered on a light bar of the mask and was either positive peak contrast (same-polarity test and mask) or negative peak contrast (opposite-polarity test and mask). In Experiment I, the test and mask had simultaneous onset. With a 6-cpd mask, the same-polarity test-threshold elevation versus mask-duration function increases monotonically. For a 1-cpd mask, the same-polarity threshold-mask-duration function is nonmonotonic, with peak masking effect produced by a grating pulse of 80-100 ms. These masking effects are closely congruent with known dynamic contrast effects. With negative tests, masking-duration functions are elevated from same-polarity functions and are essentially similar in shape for 1- and 6-cpd masks. The elevated thresholds suggest inhibitory interaction between ON and OFF pathways, with a similar time course across spatial frequency. In Experiment 2, the D6 test was delayed from mask onset by 33 ms. Positive contrasts only were employed. For 1-cpd stimuli, the delay of test greatly reduced masking at all mask durations and eliminated the nonmonotonic function. This suggests that for low-spatial-frequency patterns, perceived contrast is determined by an early peak component of the neural response. But for 6-cpd stimuli, masking of the delayed test was somewhat greater at all mask durations, consistent with a gradually increasing underlying neural response to the grating. Finally, in Experiment 3, same-polarity masking effects at both spatial frequencies were replicated with negative-contrast test and mask (OFF pathway mediation). This indicates that the ON and OFF pathways have similar response dynamics. (C) 1998 Optical Society of America. [References: 24]
机译:脉冲光栅的感知对比度随光栅的曝光时间和空间频率而显着变化。我们用图案掩盖范例研究了感知到的光栅对比度的动态变化。我们通过变化持续时间(50-500 ms)的固定对比度余弦光栅模式,测量了一个简短的局部测试模式(D6刺激,持续时间为30 ms)的掩蔽。余弦掩模图案的空间频率为每度1或6个周期(cpd),对比度为0.3。 D6测试图案位于掩模的光条上,并且为正峰对比度(相同极性的测试和掩模)或负峰对比度(相反极性的测试和掩模)。在实验一中,测试和面罩同时发作。使用6 CPD掩膜时,相同极性的测试阈值仰角与掩膜持续时间函数会单调增加。对于1-cpd掩模,相同极性的阈值-掩模-持续时间函数是非单调的,由80-100 ms的光栅脉冲产生峰值掩模效应。这些掩盖效果与已知的动态对比度效果非常一致。在阴性测试中,掩膜持续时间函数从相同极性的函数中提高,并且在形状上与1-cpd和6-cpd掩模基本相似。升高的阈值表明ON和OFF通路之间存在抑制性相互作用,跨空间频率具有相似的时间过程。在实验2中,D6测试从面罩开始延迟了33毫秒。仅使用正面对比。对于1-cpd刺激,测试延迟大大降低了所有遮罩持续时间的遮罩,并消除了非单调功能。这表明对于低空间频率模式,感知的对比度由神经反应的早期峰值分量决定。但是对于6-cpd刺激,在所有遮罩持续时间内,延迟测试的遮罩都稍大一些,这与逐渐增加的对光栅的潜在神经反应一致。最后,在实验3中,两个空间频率的相同极性掩蔽效果通过负对比测试和掩蔽(OFF通路中介)进行了复制。这表明ON和OFF路径具有相似的响应动力学。 (C)1998年美国眼镜学会。 [参考:24]

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