Horwitz Gregory D, Albright Thomas D
Vision Center Laboratory, The Salk Institute for Biological Studies, La Jolla, CA, USA.
J Vis. 2005 Jun 17;5(6):525-33. doi: 10.1167/5.6.4.
The motion of a color-defined edge is often more difficult to perceive than the motion of a luminance-defined edge. Neurons subserving motion vision may therefore be particularly sensitive to luminance contrast. One class of neurons thought to play a critical role in motion perception is V1 neurons whose spatiotemporal receptive fields are oriented in space-time. We used the reverse correlation technique to study the relationship between color tuning and space-time receptive field orientation in V1 neurons of awake, fixating monkeys. Neurons with space-time oriented receptive fields were tuned almost exclusively for luminance, whereas neurons with nonoriented space-time receptive fields were tuned for luminance or for color. These results suggest that the special role of luminance contrast in motion perception is due in part to the establishment of space-time oriented receptive fields among luminance-tuned, but not color-tuned, V1 neurons.
颜色定义的边缘的运动通常比亮度定义的边缘的运动更难察觉。因此,负责运动视觉的神经元可能对亮度对比度特别敏感。一类被认为在运动感知中起关键作用的神经元是V1神经元,其时空感受野在时空上是定向的。我们使用反向相关技术研究清醒、注视猴子的V1神经元中颜色调谐与时空感受野方向之间的关系。具有时空定向感受野的神经元几乎只对亮度进行调谐,而具有非定向时空感受野的神经元则对亮度或颜色进行调谐。这些结果表明,亮度对比度在运动感知中的特殊作用部分归因于在亮度调谐而非颜色调谐的V1神经元中建立了时空定向感受野。