Anzai Akiyuki, Peng Xinmiao, Van Essen David C
Department of Anatomy and Neurobiology, Washington University School of Medicine, 660 South Euclid Avenue, St. Louis, Missouri 63110, USA.
Nat Neurosci. 2007 Oct;10(10):1313-21. doi: 10.1038/nn1975. Epub 2007 Sep 16.
Contours and textures are important attributes of object surfaces, and are often described by combinations of local orientations in visual images. To elucidate the neural mechanisms underlying contour and texture processing, we examined receptive field (RF) structures of neurons in visual area V2 of the macaque monkey for encoding combinations of orientations. By measuring orientation tuning at several locations within the classical RF, we found that a majority (70%) of V2 neurons have similar orientation tuning throughout the RF. However, many others have RFs containing subregions tuned to different orientations, most commonly about 90 degrees apart. By measuring interactions between two positions within the RF, we found that approximately one-third of neurons show inhibitory interactions that make them selective for combinations of orientations. These results indicate that V2 neurons could play an important role in analyzing contours and textures and could provide useful cues for surface segmentation.
轮廓和纹理是物体表面的重要属性,通常通过视觉图像中局部方向的组合来描述。为了阐明轮廓和纹理处理背后的神经机制,我们研究了猕猴视觉区域V2中神经元的感受野(RF)结构,以编码方向组合。通过测量经典RF内多个位置的方向调谐,我们发现大多数(70%)V2神经元在整个RF中具有相似的方向调谐。然而,许多其他神经元的RF包含调谐到不同方向的子区域,最常见的是相差约90度。通过测量RF内两个位置之间的相互作用,我们发现大约三分之一的神经元表现出抑制性相互作用,这使得它们对方向组合具有选择性。这些结果表明,V2神经元可能在分析轮廓和纹理方面发挥重要作用,并可能为表面分割提供有用的线索。