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对比剂包络的运动:平静与噪声。

Motion of contrast envelopes: peace and noise.

作者信息

Cropper S J, Johnston A

机构信息

Department of Physiology, University of Melbourne, Victoria, Australia.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2001 Sep;18(9):2237-54. doi: 10.1364/josaa.18.002237.

Abstract

We examined the effect of changing the composition of the carrier on the perception of motion in a drifting contrast envelope. Human observers were required to discriminate the direction of motion of contrast modulations of an underlying carrier as a function of temporal frequency and scaled (carrier) contrast. The carriers were modulations of both color and luminance, defined within a cardinal color space. Random-noise carriers had either binary luminance profiles or flat (gray-scale-white) or 1/f (pink) spectral power functions. Independent variables investigated were the envelope spatial frequency and temporal-drift frequency and the fundamental spatial frequency, color, and temporal-update frequency of the carrier. The results show that observers were able to discriminate correctly the direction of envelope motion for binary-noise carriers at both high (16 Hz) and low (2 Hz) temporal-drift frequencies. Changing the carrier format from binary noise to a flat (gray-scale) or 1/f amplitude profile reduced discrimination performance slightly but only in the high-temporal-frequency condition. Manipulation of the fundamental frequency of the carrier elicited no change in performance at the low temporal frequencies but produced ambiguous or reversed motion at the higher temporal frequencies as soon as the fundamental frequency was higher than the envelope modulation frequency. We found that envelope motion detection was sensitive to the structure of the carrier.

摘要

我们研究了改变载体成分对漂移对比度包络中运动感知的影响。要求人类观察者根据时间频率和缩放后的(载体)对比度来辨别潜在载体对比度调制的运动方向。载体是在基本颜色空间内定义的颜色和亮度的调制。随机噪声载体具有二元亮度分布或平坦(灰度 - 白色)或1/f(粉色)频谱功率函数。研究的自变量包括包络空间频率、时间漂移频率以及载体的基本空间频率、颜色和时间更新频率。结果表明,观察者能够在高(16Hz)和低(2Hz)时间漂移频率下正确辨别二元噪声载体的包络运动方向。将载体格式从二元噪声改为平坦(灰度)或1/f幅度分布会略微降低辨别性能,但仅在高时间频率条件下如此。在低时间频率下,对载体基频的操作不会引起性能变化,但一旦基频高于包络调制频率,在较高时间频率下就会产生模糊或反向的运动。我们发现包络运动检测对载体结构敏感。

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