Tsujimura Sei-ichi, Zaidi Qasim
Department of Vision Sciences, SUNY College of Optometry, 33 West 42 Street, 10036, New York, NY 10036, USA.
Vision Res. 2002 Dec;42(28):3005-17. doi: 10.1016/s0042-6989(02)00391-7.
A number of papers have claimed that at moderate to high contrasts, sensitivity is higher for shear motion than for uniform motion. We show in a 2 x 2AFC task, designed to minimize any potential artefacts due to criterion level or response bias, that sensitivities are essentially equal for shear and uniform motion under general conditions. It has also been claimed that position tracking enhances sensitivity for shear motion. We added moving sinusoidal gratings to stationary sinusoidal gratings of the same spatial frequency and orientation, to create stimuli in which position changes and motion energy have opposite directions, to show that shear and uniform motion are both subserved by motion-energy mechanisms at speeds above 2.0 deg/s and by position tracking at slower speeds.
许多论文声称,在中等到高对比度下,剪切运动的敏感度高于均匀运动。我们在一个2x2AFC任务中表明,在一般条件下,剪切运动和均匀运动的敏感度基本相等,该任务旨在将由于标准水平或反应偏差导致的任何潜在伪影降至最低。也有人声称位置跟踪会提高对剪切运动的敏感度。我们将移动的正弦光栅添加到具有相同空间频率和方向的静止正弦光栅中,以创建位置变化和运动能量方向相反的刺激,以表明在速度高于2.0度/秒时,剪切运动和均匀运动都由运动能量机制支持,而在较慢速度下则由位置跟踪支持。