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首页> 外文期刊>Journal of vision >Relative latencies of cone signals measured by a moving vernier task
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Relative latencies of cone signals measured by a moving vernier task

机译:移动游标任务测量的圆锥信号的相对延迟

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摘要

When a bipartite blue and red bar is swept across a bright yellow field, the blue half of the bar appears to lag behind the red and to exhibit a longer persistence (J. D. Mollon & P. G. Polden, 1976). This effect has been taken to reveal the longer time constants of the short-wave channels of the visual system. In Experiment 1, we quantified the effect by a nulling technique: The average latency of the short-wave bar relative to the long-wave was 17.9 ms, and the average value for the relative persistence, i.e. the apparent temporal separation of the trailing edges of the bars, was 48.3 ms. However, the conditions of the original demonstration and those of Experiment 1 place the short-wave and long-wave channels in very different states: The yellow field produces little light adaptation in the short-wave cones, but polarizes opponent channels that carry short-wave signals. In Experiment 2 we selected an adapting field that equally raised the short- and long-wave mechanisms above their absolute thresholds but did not so strongly polarize post-receptoral channels. We adjusted the two stimuli to be equally above threshold on this field. When light adaptation and stimulus conditions were equated in these ways, there was very little difference either in the perceived latency or in the perceived duration of the short-wave and long-wave stimuli. We discuss possible reasons why different estimates of sensory latencies may be obtained from reaction times and from perceptual judgments.
机译:当蓝色和红色的双色条形图扫过明亮的黄色场时,条形图的蓝色部分似乎滞后于红色,并表现出更长的持久性(J. D. Mollon&P. G. Polden,1976)。采取这种效果是为了揭示视觉系统短波通道的较长时间常数。在实验1中,我们通过归零技术对效果进行了量化:短波条相对于长波的平均等待时间为17.9 ms,相对持久性的平均值,即后沿的明显时间间隔条的时间为48.3毫秒。但是,原始演示的条件和实验1的条件使短波和长波通道处于非常不同的状态:黄色场在短波锥中几乎不会产生光适应性,但会使携带短波的对手通道极化。波浪信号。在实验2中,我们选择了一个自适应场,该场将短波和长波机制均等地提高到其绝对阈值之上,但不会如此强烈地极化后受体通道。我们将这两个刺激调整为同样高于该领域的阈值。当以这些方式使光适应和刺激条件相等时,短波和长波刺激的感知潜伏期或感知持续时间几乎没有差异。我们讨论了可能的原因,为什么可以从反应时间和感知判断中获得不同的感觉潜伏期估计。

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