Tyler Christopher W, Likova Lora T, Kontsevich Leonid L, Wade Alex R
Smith-Kettlewell Eye Research Institute, 2318 Fillmore Street, San Francisco, CA 94115, USA.
Neuroimage. 2006 Mar;30(1):228-38. doi: 10.1016/j.neuroimage.2005.09.067. Epub 2005 Dec 13.
Functional MRI studies have identified a cortical region designated as KO between retinotopic areas V3A/B and motion area V5 in human cortex as particularly responsive to motion-defined or kinetic borders. To determine the response of the KO region to more general aspects of structure, we used stereoscopic depth borders and disparate planes with no borders, together with three stimulus types that evoked no depth percept: luminance borders, line contours and illusory phase borders. Responses to these stimuli in the KO region were compared with the responses in retinotopically defined areas that have been variously associated with disparity processing in neurophysiological and fMRI studies. The strongest responses in the KO region were to stimuli evoking perceived depth structure from either disparity or motion cues, but it showed negligible responses either to luminance-based contour stimuli or to edgeless disparity stimuli. We conclude that the region designated as KO is best regarded as a primary center for the generic representation of depth structure rather than any kind of contour specificity.
功能磁共振成像研究已经在人类皮层中确定了一个位于视网膜拓扑区域V3A/B和运动区域V5之间的被称为KO的皮层区域,该区域对运动定义的或动态边界特别敏感。为了确定KO区域对更一般结构方面的反应,我们使用了立体深度边界和无边界的不同平面,以及三种不会引起深度感知的刺激类型:亮度边界、线条轮廓和虚幻相位边界。将KO区域对这些刺激的反应与视网膜拓扑定义区域中的反应进行了比较,这些区域在神经生理学和功能磁共振成像研究中与视差处理有不同程度的关联。KO区域中最强的反应是对由视差或运动线索引起的可感知深度结构的刺激,但它对基于亮度的轮廓刺激或无边缘视差刺激的反应可以忽略不计。我们得出结论,被称为KO的区域最好被视为深度结构通用表征的主要中心,而不是任何一种轮廓特异性中心。