Carney T
Neurometrics Institute, Oakland, CA 94619-1625, USA.
Vision Res. 1997 Sep;37(17):2361-8. doi: 10.1016/s0042-6989(97)00053-9.
In one type of cyclopean motion stimulus one eye views a counterphase flickering grating while the other eye views the same pattern in spatio-temporal quadrature. Algebraic summation of the two image sequences results in a drifting grating. Upon binocular (cyclopean) combination of the two patterns a drifting grating is perceived even though neither monocular pattern is moving. While this appears to support the position that the motion system is binocular, it has been suggested that such demonstrations involve higher level feature tracking rather than early motion system activation. The perceived direction of motion could result from the tracking of features after neural summation of left and right eye images. However, by adding a static, in-phase, pedestal grating to the left and right eye flickering test gratings, the direction information based on feature tracking is removed while leaving the motion energy information unchanged. We have found that when such stimuli are presented for several seconds, direction discrimination performance is significantly better than chance for pedestal grating contrasts several times the test grating contrast. Therefore, in the absence of a feature tracking cue, the direction of motion is identified using a binocular motion energy mechanism. The results do not exclude the existence of a binocular feature tracking system. Both systems are likely to exist.
在一种独眼运动刺激中,一只眼睛观看反相闪烁光栅,而另一只眼睛观看时空正交的相同图案。两个图像序列的代数求和产生一个漂移光栅。尽管两个单眼图案都没有移动,但在双眼(独眼)组合这两个图案时,会感知到一个漂移光栅。虽然这似乎支持运动系统是双眼的观点,但有人认为这种演示涉及更高层次的特征跟踪,而不是早期运动系统的激活。感知到的运动方向可能源于左右眼图像神经求和后对特征的跟踪。然而,通过在左右眼闪烁测试光栅上添加一个静态的同相基座光栅,基于特征跟踪的方向信息被去除,而运动能量信息保持不变。我们发现,当呈现这样的刺激几秒钟时,对于基座光栅对比度是测试光栅对比度几倍的情况,方向辨别性能显著优于随机水平。因此,在没有特征跟踪线索的情况下,使用双眼运动能量机制来识别运动方向。这些结果并不排除双眼特征跟踪系统的存在。这两种系统可能都存在。