Van Hooser Stephen D, Heimel J Alexander, Chung Sooyoung, Nelson Sacha B
Department of Biology, Brandeis University, Waltham, Massachusetts 02454, USA.
J Neurosci. 2006 Jul 19;26(29):7680-92. doi: 10.1523/JNEUROSCI.0108-06.2006.
In the cerebral cortex of mammals, horizontal connections link cells up to several millimeters apart. In primary visual cortex (V1) of mammals with orientation maps, horizontal connections ramify in periodic patches across the cortical surface, connecting cells with similar orientation preferences. Rodents have orientation-selective cells but lack orientation maps, raising questions about relationships of horizontal connections to functional maps and receptive field properties. To address these questions, we studied anatomy of horizontal connections and characterized horizontal functional interactions in V1 of the gray squirrel, a highly visual rodent. Long-range intrinsic connections in squirrel V1 extended 1-2 mm but were not patchy or periodic. This result suggests that periodic and patchy connectivity is not a universal organizing principle of cortex, and the existence of patchy and periodic connectivity and functional maps may be linked. In multielectrode and intracellular recordings, we found evidence of unselective local interactions among cells, similar to pinwheel centers of carnivores. These data suggest that, in mammals with and without orientation maps, local connections link near neighbors without regard to orientation selectivity. In single-unit recordings, we found length-summing and end-stopped cells that were similar to those in other mammals. Length-summing cell surrounds were orientation selective, whereas surrounds of end-stopped cells were not. Receptive field response classes are quite similar across mammals, and therefore patchy and columnar connectivity may not be essential for these properties.
在哺乳动物的大脑皮层中,水平连接将相距达几毫米的细胞连接起来。在具有方位图的哺乳动物的初级视觉皮层(V1)中,水平连接在整个皮层表面呈周期性斑块状分支,连接具有相似方位偏好的细胞。啮齿动物具有方位选择性细胞,但缺乏方位图,这引发了关于水平连接与功能图以及感受野特性之间关系的问题。为了解决这些问题,我们研究了灰松鼠(一种视觉高度发达的啮齿动物)V1中水平连接的解剖结构,并对水平功能相互作用进行了特征描述。松鼠V1中的长程内在连接延伸1 - 2毫米,但并非斑块状或周期性的。这一结果表明,周期性和斑块状连接并非皮层的普遍组织原则,斑块状和周期性连接以及功能图的存在可能存在关联。在多电极和细胞内记录中,我们发现了细胞间非选择性局部相互作用的证据,类似于食肉动物的风车中心。这些数据表明,在有和没有方位图的哺乳动物中,局部连接连接相邻细胞,而不考虑方位选择性。在单单元记录中,我们发现了与其他哺乳动物中类似的长度总和细胞和终端抑制细胞。长度总和细胞的周边具有方位选择性,而终端抑制细胞的周边则没有。不同哺乳动物的感受野反应类别非常相似,因此斑块状和柱状连接对于这些特性可能并非必不可少。