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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Snakes and ladders: the role of temporal modulation in visual contour integration.
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Snakes and ladders: the role of temporal modulation in visual contour integration.

机译:蛇和梯子:时间调制在视觉轮廓整合中的作用。

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摘要

We investigated temporal aspects of the cortical mechanisms supporting visual contour integration by measuring observers' efficiency at detecting fragmented contours, composed of Gabor micropatterns, embedded in a field of distractor elements. Gabors consisted of a static Gaussian enveloping a sinusoidal carrier which was temporally modulated by motion or counter-phase flicker. The elements forming the path could be oriented either parallel ('snakes') or perpendicular to the contour orientation ('ladders'). Sensitivity to contour structure (estimated by measuring the maximum tolerable element orientation jitter supporting contour detection) was increased when the elements were drifting or flickering. Snakes were more detectable than ladders under all conditions. The increase in sensitivity conferred by drifting carriers was present even when the elements in the same stimulus were drifting at a range of speeds spanning almost three octaves. These results lend further support to the notion that the contour integration system receives separate transient and sustained input.
机译:我们通过测量观察者检测碎片轮廓的效率来研究支持视觉轮廓整合的皮质机制的时间方面,该碎片轮廓由嵌入在分散器元素区域中的Gabor微图案组成。 Gabors由包围正弦载波的静态高斯组成,该正弦载波通过运动或反相闪烁在时间上进行调制。形成路径的元素可以平行于(“蛇形”)或垂直于轮廓取向(“梯子”)定向。当元素漂移或闪烁时,对轮廓结构的敏感性(通过测量支持轮廓检测的最大可容忍元素取向抖动来估计)。在所有情况下,蛇都比梯子更容易被检测到。即使在相同刺激中的元素以跨越几乎三个八度的速度范围漂移时,也会出现由漂移载流子赋予的灵敏度增加。这些结果进一步支持了轮廓积分系统接收单独的瞬态和持续输入的概念。

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