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纹理方向调制检测中的时空相互作用。

Spatiotemporal interactions in detection of texture orientation modulations.

作者信息

Motoyoshi Isamu, Nishida Shin'ya

机构信息

Human and Information Science Laboratory, NTT Communication Science Laboratories, NTT Corporation, 3-1 Morinosato-Wakamiya, Atsugi, Kanagawa, Japan.

出版信息

Vision Res. 2002 Nov;42(26):2829-41. doi: 10.1016/s0042-6989(02)00336-x.

Abstract

Previous studies have revealed spatial and temporal characteristics of texture orientation modulation detection. This study examined spatiotemporal interactions. We measured threshold amplitudes for detecting orientation modulations in various waveforms. The orientation modulations were presented in a dynamic texture display in which the spatial arrangement and mean orientation of elements were randomly updated at a given frame duration (17-900 ms). The results of three experiments all indicated significant spatiotemporal interactions. As the frame duration was decreased, the detection sensitivity declined more steeply for the sinusoidal orientation modulations than for the square and missing-fundamental waveforms (Expt 1), declined more steeply for low spatial-frequency sinusoidal modulations than for high frequency ones (Expt 2), and declined more steeply for sparse textures than for dense textures (Expt 3). These results indicate that the visual system loses its sensitivity more profoundly for long-range orientation modulations than for short-range modulations as the rate of orientation change increases, suggesting that the mechanism for detecting orientation modulation reduces its effective spatial range for rapid input changes.

摘要

先前的研究已经揭示了纹理方向调制检测的时空特征。本研究考察了时空交互作用。我们测量了在各种波形中检测方向调制的阈值幅度。方向调制呈现在动态纹理显示中,其中元素的空间排列和平均方向在给定的帧持续时间(17 - 900毫秒)内随机更新。三个实验的结果均表明存在显著的时空交互作用。随着帧持续时间的缩短,正弦方向调制的检测灵敏度比方形和缺基波形下降得更陡峭(实验1),低频正弦调制比高频正弦调制下降得更陡峭(实验2),稀疏纹理比密集纹理下降得更陡峭(实验3)。这些结果表明,随着方向变化率的增加,视觉系统对长程方向调制比对短程方向调制失去敏感性的程度更深,这表明检测方向调制的机制会因快速输入变化而减小其有效的空间范围。

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