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二阶运动的感知速度及其对刺激对比度的依赖性。

The perceived speed of second-order motion and its dependence on stimulus contrast.

作者信息

Ledgeway T, Smith A T

机构信息

Department of Psychology, University of London, Surrey, England.

出版信息

Vision Res. 1995 May;35(10):1421-34. doi: 10.1016/0042-6989(95)98722-l.

DOI:10.1016/0042-6989(95)98722-l
PMID:7645271
Abstract

Speed matches were obtained, using a spatial two-alternative forced-choice task, between a second-order motion stimulus and a first-order motion stimulus. The second-order motion stimulus was composed of contrast-modulated noise [produced by multiplying two-dimensional (2-d), static noise by a drifting, one-dimensional (1-d) sinusoid]. The first-order motion stimulus was composed of luminance-modulated noise (produced by summing, rather than multiplying, 2-d noise and a drifting sine grafting). In Expt 1, the relationship between the perceived speed of first- and second-order motion was examined. The motion stimuli had the same spatial frequency (1 or 3 c/deg) and were equated for visibility by presenting them at the same multiple of direction-identification threshold. Over a range of physical speeds, the perceived speeds of the first-order and second-order motion stimuli were identical when their physical speeds were the same. In Expt 2, the effect of varying stimulus "contrast" (contrast modulation depth) on the perceived speed of second-order motion was examined. The contrast of the first-order motion stimulus was fixed and speed matches were obtained for second-order motion stimuli at several contrast modulation depths. The motion stimuli had the same spatial (1 or 4 c/deg) and temporal (5 or 20 Hz) frequencies. It was found that the perceived speed of second-order motion was approximately linearly related to log modulation depth. In agreement with previous studies we also confirmed that the perceived speed of first-order motion is similarly dependent on stimulus contrast (luminance modulation depth).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

使用空间二选一强迫选择任务,在二阶运动刺激和一阶运动刺激之间获得了速度匹配。二阶运动刺激由对比度调制噪声组成(通过将二维(2 - d)静态噪声与一维(1 - d)漂移正弦波相乘产生)。一阶运动刺激由亮度调制噪声组成(通过将二维噪声与漂移正弦波相加而非相乘产生)。在实验1中,研究了一阶和二阶运动的感知速度之间的关系。运动刺激具有相同的空间频率(1或3周/度),并通过以相同倍数的方向识别阈值呈现来使可见度相等。在一系列物理速度范围内,当一阶和二阶运动刺激的物理速度相同时,它们的感知速度相同。在实验2中,研究了改变刺激“对比度”(对比度调制深度)对二阶运动感知速度的影响。一阶运动刺激的对比度固定,在几个对比度调制深度下获得二阶运动刺激的速度匹配。运动刺激具有相同的空间(1或4周/度)和时间(5或20赫兹)频率。发现二阶运动的感知速度与对数调制深度大致呈线性关系。与先前的研究一致,我们还证实一阶运动的感知速度同样依赖于刺激对比度(亮度调制深度)。(摘要截断于250字)

相似文献

1
The perceived speed of second-order motion and its dependence on stimulus contrast.二阶运动的感知速度及其对刺激对比度的依赖性。
Vision Res. 1995 May;35(10):1421-34. doi: 10.1016/0042-6989(95)98722-l.
2
Adaptation to second-order motion results in a motion aftereffect for directionally-ambiguous test stimuli.对二阶运动的适应会导致对方向模糊的测试刺激产生运动后效。
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Failure of direction identification for briefly presented second-order motion stimuli: evidence for weak direction selectivity of the mechanisms encoding motion.短暂呈现的二阶运动刺激的方向识别失败:编码运动的机制方向选择性较弱的证据。
Vision Res. 2002 Jun;42(14):1739-58. doi: 10.1016/s0042-6989(02)00106-2.
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Changes in perceived speed following adaptation to first-order and second-order motion.适应一阶和二阶运动后感知速度的变化。
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