识别显示为连续轮廓碎片的字母。

IF 3.1 Q2 NEUROSCIENCES
Sherry Zhang, Jack Morrison, Wei Wang, Ernest Greene
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引用次数: 0

摘要

形状可以作为部分显示,但通过视觉系统中的前馈和反馈机制可以作为整体感知,尽管这一过程的确切时空关系尚不清楚。我们的实验检验了字母片段作为一个快速序列显示的整合。我们研究了时序和掩蔽对积分的影响,假设增加帧之间的时序间隔会破坏轮廓连接而损害识别。我们进一步使用不同的掩模类型,一个全场模式掩模和一个较小的条形掩模,来检查全局掩模和局部掩模对集成的影响。我们发现,不同的掩模类型和对比度比当持久性或掩模密度被操纵时产生更大的识别下降。这项研究支持了先前在字母识别方面的工作,并对有助于形状识别的时空因素提供了更深入的了解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recognition of letters displayed as successive contour fragments.

Recognition of letters displayed as successive contour fragments.

Recognition of letters displayed as successive contour fragments.

Recognition of letters displayed as successive contour fragments.

Shapes can be displayed as parts but perceived as a whole through feedforward and feedback mechanisms in the visual system, though the exact spatiotemporal relationships for this process are still unclear. Our experiments examined the integration of letter fragments that were displayed as a rapid sequence. We examined the effects of timing and masking on integration, hypothesizing that increasing the timing interval between frames would impair recognition by disrupting contour linkage. We further used different mask types, a full-field pattern mask and a smaller strip mask, to examine the effects of global vs local masking on integration. We found that varying mask types and contrast produced a greater decline in recognition than was found when persistence or mask density was manipulated. The study supports prior work on letter recognition and provides greater insight into the spatiotemporal factors that contribute to the identification of shapes.

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来源期刊
AIMS Neuroscience
AIMS Neuroscience NEUROSCIENCES-
CiteScore
4.20
自引率
0.00%
发文量
26
审稿时长
8 weeks
期刊介绍: AIMS Neuroscience is an international Open Access journal devoted to publishing peer-reviewed, high quality, original papers from all areas in the field of neuroscience. The primary focus is to provide a forum in which to expedite the speed with which theoretical neuroscience progresses toward generating testable hypotheses. In the presence of current and developing technology that offers unprecedented access to functions of the nervous system at all levels, the journal is designed to serve the role of providing the widest variety of the best theoretical views leading to suggested studies. Single blind peer review is provided for all articles and commentaries.
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