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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Component processes in contour integration: A direct comparison between snakes and ladders in a detection and a shape discrimination task
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Component processes in contour integration: A direct comparison between snakes and ladders in a detection and a shape discrimination task

机译:轮廓整合中的组成过程:在检测和形状识别任务中蛇和梯子之间的直接比较

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摘要

In contour integration, a relevant question is whether snakes and ladders are processed similarly. Higher presentation time thresholds for ladders in detection tasks indicate this is not the case. However, in a detection task only processing differences at the level of element linking and possibly contour localization might be picked up, while differences at the shape encoding level cannot be noticed. In this study, we make a direct comparison of detection and shape discrimination tasks to investigate if processing differences in the visual system between snakes and ladders are limited to contour detection or extend to higher level contour processing, like shape encoding. Stimuli consisted of elements that were oriented collinearly (snakes) or orthogonally (ladders) to the contour path and were surrounded by randomly oriented background elements. In two tasks, six experienced subjects either detected the contour when presented with a contour and a completely random stimulus or performed a shape discrimination task when presented with two contours with different curvature. Presentation time was varied in 9 steps between 8 and 492. ms. By applying a generalized linear mixed model we found that differences in snake and ladder processing are not limited to a detection stage but are also apparent at a shape encoding stage.
机译:在轮廓整合中,一个相关的问题是蛇和梯子是否被类似地处理。检测任务中梯子的较高显示时间阈值表明情况并非如此。但是,在检测任务中,仅会拾取元素链接级别的处理差异以及可能的轮廓定位,而形状编码级别的差异不会被注意到。在这项研究中,我们直接比较检测和形状识别任务,以研究蛇和梯子之间视觉系统中的处理差异是否仅限于轮廓检测或扩展到更高级别的轮廓处理,例如形状编码。刺激由与轮廓路径共线(蛇形)或正交(梯形)定向的元素组成,并被随机定向的背景元素包围。在两项任务中,六个有经验的受试者在呈现轮廓和完全随机的刺激时要么检测出轮廓,要么呈现两个曲率不同的轮廓时执行形状识别任务。演示时间在8到492 ms之间以9个步长变化。通过应用广义线性混合模型,我们发现蛇形和梯形处理中的差异不仅限于检测阶段,而且在形状编码阶段也很明显。

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