Mandelli Marie-Juliette F, Kiper Daniel C
Institute of Neuroinformatics, University of Zurich, Swiss Federal Institute of Technology, Zurich, Switzerland.
J Vis. 2005 May 13;5(5):405-16. doi: 10.1167/5.5.2.
Glass patterns are a valuable tool to study the cortical stages of form perception. We use circular Glass patterns (cGP) to study the relation between form and color vision. The detection of Glass patterns is thought to be carried out in at least two stages. In the first stage, the local orientation information from the pairs of dots is analyzed. A later stage integrates this local orientation information to yield the global percept of form. Previous work (K. S. Cardinal & D. C. Kiper, 2003) has shown that the second stage is chromatically selective, with a broad tuning in color space. Here we completed our characterization of the integration stage by measuring the size of the spatial integration area. We find that the integration area is similar to the size of V4 receptive fields. Furthermore, we measured the chromatic selectivity and spatial resolution of the first stage mechanisms. First stage mechanisms are more selective for color than the integration stage. Their spatial resolution is consistent with the idea that V1/V2 neurons perform the analysis of the dot pairs' orientation. Our results are consistent with the idea that V1/V2 neurons perform the local analysis, and that spatial integration is achieved at the level of V4.
格拉斯图案是研究形态感知皮层阶段的一种有价值的工具。我们使用圆形格拉斯图案(cGP)来研究形态与颜色视觉之间的关系。格拉斯图案的检测被认为至少分两个阶段进行。在第一阶段,分析来自点对的局部方向信息。随后的阶段整合这些局部方向信息以产生形态的整体感知。先前的研究(K. S. 卡迪纳尔和D. C. 基珀,2003年)表明,第二阶段具有颜色选择性,在颜色空间中具有广泛的调谐。在这里,我们通过测量空间整合区域的大小完成了对整合阶段的表征。我们发现整合区域与V4感受野的大小相似。此外,我们测量了第一阶段机制的颜色选择性和空间分辨率。第一阶段机制对颜色的选择性比整合阶段更强。它们的空间分辨率与V1/V2神经元执行点对方向分析的观点一致。我们的结果与V1/V2神经元执行局部分析以及在V4水平实现空间整合的观点一致。