Sutter A, Sperling G, Chubb C
Department of Psychology, Loyola University, Chicago, IL 60626, USA.
Vision Res. 1995 Apr;35(7):915-24. doi: 10.1016/0042-6989(94)00196-s.
Recent investigations of texture and motion perception suggest two early filtering stages: an initial stage of selective linear filtering followed by rectification and a second stage of linear filtering. Here we demonstrate that there are differently scaled second-stage filters, and we measure their contrast modulation sensitivity as a function of spatial frequency. Our stimuli are Gabor modulations of a suprathreshold, bandlimited, isotropic carrier noise. The subjects' task is to discriminate between two possible orientations of the Gabor. Carrier noises are filtered into four octave-wide bands, centered at m = 2, 4, 8, and 16 c/deg. The Gabor test signals are w = 0.5, 1, 2, 4 and 8 c/deg. The threshold modulation of the test signal is measured for all 20 combinations of m and w. For each carrier frequency m, the Gabor test frequency w to which subjects are maximally sensitive appears to be approximately 3-4 octaves below m. The consistent m x w interaction suggests that each second-stage spatial filter may be differentially tuned to a particular first-stage spatial frequency. The most sensitive combination is a second-stage filter of 1 c/deg with first-stage inputs of 8-16 c/deg. We conclude that second-order texture perception appears to utilize multiple channels tuned to spatial frequency and orientation, with channels tuned to low modulation frequencies appearing to be best served by carrier frequencies 8 to 16 times higher than the modulations they are tuned to detect.
一个是选择性线性滤波并整流后的初始阶段,以及第二个线性滤波阶段。在此我们证明存在不同尺度的第二阶段滤波器,并测量了它们作为空间频率函数的对比度调制灵敏度。我们的刺激是超阈值、带限、各向同性载波噪声的Gabor调制。受试者的任务是区分Gabor的两种可能方向。载波噪声被滤波到四个倍频程宽的频段,中心频率分别为m = 2、4、8和16周/度。Gabor测试信号的频率为w = 0.5、1、2、4和8周/度。针对m和w的所有20种组合测量测试信号的阈值调制。对于每个载波频率m,受试者最敏感的Gabor测试频率w似乎比m低约3 - 4个倍频程。一致的m×w相互作用表明每个第二阶段空间滤波器可能对特定的第一阶段空间频率进行了不同的调谐。最敏感的组合是1周/度的第二阶段滤波器与8 - 16周/度的第一阶段输入。我们得出结论,二阶纹理感知似乎利用了多个调谐到空间频率和方向的通道,调谐到低调制频率的通道似乎由比它们调谐检测的调制频率高8到16倍的载波频率提供最佳服务。