Pantle A, Turano K
Department of Psychology, Miami University, Oxford, OH 45056.
Vision Res. 1992 Nov;32(11):2093-106. doi: 10.1016/0042-6989(92)90071-p.
Visual motion processes were studied with luminance- and contrast-modulated gratings. A sine-wave luminance grating was displaced abruptly back and forth by 3/16 cycle. The display sequence is ambiguous in that each 3/16-cycle phase shift (short-path motion) could just as readily be seen as a 13/16-cycle shift (long-path motion) in the opposite direction. By varying the duration of the interval (IFI) between the two phase positions, the luminance of the IFI, or the spatial frequency of the grating, it was possible to bias the ambiguous percept in favor of short-path motions or long-path motions. A contrast-modulated grating displaced through 3/16 cycle always appeared t undergo short-path motion. Current motion models which incorporate Reichardt-type/energy mechanisms and certain types of auxiliary signal transformations which precede those mechanisms do not adequately explain the effects of IFI intensity on the perceived motion of a sinusoidal grating or the effect of IFI duration on the perceived motion of a contrast-modulated grating.
利用亮度和对比度调制光栅研究了视觉运动过程。一个正弦波亮度光栅突然来回移动3/16个周期。显示序列具有模糊性,因为每个3/16周期的相移(短路径运动)很容易被视为相反方向的13/16周期相移(长路径运动)。通过改变两个相位位置之间的间隔持续时间(IFI)、IFI的亮度或光栅的空间频率,可以使模糊的感知偏向于短路径运动或长路径运动。一个对比度调制光栅移动3/16个周期时总是呈现短路径运动。当前结合了赖夏特型/能量机制以及在这些机制之前的某些类型辅助信号转换的运动模型,无法充分解释IFI强度对正弦光栅感知运动的影响,也无法解释IFI持续时间对对比度调制光栅感知运动的影响。