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运动模糊与运动锐化:时间拖影和局部对比度非线性。

Motion blur and motion sharpening: temporal smear and local contrast non-linearity.

作者信息

Hammett S T, Georgeson M A, Gorea A

机构信息

Department of Psychology, University of Glasgow, UK.

出版信息

Vision Res. 1998 Jul;38(14):2099-108. doi: 10.1016/s0042-6989(97)00430-6.

Abstract

Blurred images may appear sharper when drifting than when stationary. But, paradoxically, moving sharp edges may appear more blurred. To resolve this paradox, the perceived sharpness of drifting, blurred, square wave gratings was compared with that of their static analogues over a range of speeds, blurs and spatial frequencies. Both motion blur and motion sharpening occurred, depending upon the physical blur of the patterns. For large extents of blur (> 10 min arc) moving patterns always appeared sharper than their static analogues, but for small blurs (< 10 min arc) moving edges appeared more blurred than stationary ones. We present a quantitative model for the distortion of waveforms in motion based on two factors: (i) visual temporal integration that smears moving images, and (ii) a local contrast non-linearity that increasingly sharpens the effective profile of edges as speed and contrast increase. We suggest that a plausible account of the speed-dependent non-linearity is the differential recruitment of M and P cells at different speeds.

摘要

模糊图像在漂移时可能比静止时看起来更清晰。但矛盾的是,移动的清晰边缘可能看起来更模糊。为了解决这个矛盾,我们在一系列速度、模糊程度和空间频率范围内,比较了漂移的、模糊的方波光栅与其静态类似物的感知清晰度。运动模糊和运动锐化都可能发生,这取决于图案的物理模糊程度。对于较大程度的模糊(>10分视角),移动的图案总是比其静态类似物看起来更清晰,但对于小模糊(<10分视角),移动的边缘比静止的边缘看起来更模糊。我们基于两个因素提出了一个运动中波形失真的定量模型:(i)视觉时间整合使运动图像模糊,以及(ii)局部对比度非线性,随着速度和对比度的增加,它会使边缘的有效轮廓越来越清晰。我们认为,速度依赖性非线性的一个合理原因是不同速度下M细胞和P细胞的差异性募集。

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