Chen Y, Bedell H E, Frishman L J
Harvard University, Cambridge, Massachusetts, USA.
Percept Psychophys. 1998 Nov;60(8):1329-36. doi: 10.3758/bf03207995.
The precision of velocity coding for moving stimuli of different spatial frequencies was assessed by measuring velocity discrimination thresholds for a 1-c/deg grating paired with a grating whose spatial frequency ranged from 0.25 to 4 c/deg and for grating pairs of the same spatial frequency (0.25, 1, and 4 c/deg). The gratings always moved upward, with velocities ranging from 0.5 to 16 deg/sec. Velocity discrimination was as precise for stimuli that varied in spatial frequency by +/- 2 octaves (0.25 vs. 1 c/deg and 4 vs. 1 c/deg) as for stimuli of the same spatial frequency, for specific ranges of velocity that depended on the spatial and, therefore, the temporal frequencies of the stimuli. Compared with a 1-c/deg grating, the perceived velocity of 4-c/deg gratings was about 1.3 times faster and that of 0.25-c/deg gratings was about 1.3 times slower. Although these perceived velocity biases imply variation of velocity-signal processing among spatial frequency channels, the discrimination results indicate that the motion-sensing system can compare signals across different spatial frequency channels to make fine velocity discrimination within appropriate temporal frequency limits.
通过测量与空间频率范围为0.25至4周/度的光栅配对的1周/度光栅以及相同空间频率(0.25、1和4周/度)的光栅对的速度辨别阈值,评估了不同空间频率的移动刺激的速度编码精度。光栅始终向上移动,速度范围为0.5至16度/秒。对于空间频率相差+/- 2倍频程(0.25对1周/度和4对1周/度)的刺激,在取决于刺激的空间频率以及因此时间频率的特定速度范围内,速度辨别与相同空间频率的刺激一样精确。与1周/度的光栅相比,4周/度光栅的感知速度快约1.3倍,0.25周/度光栅的感知速度慢约1.3倍。尽管这些感知速度偏差意味着空间频率通道之间速度信号处理的变化,但辨别结果表明,运动感知系统可以跨不同空间频率通道比较信号,以便在适当的时间频率限制内进行精细的速度辨别。