Hübener M, Shoham D, Grinvald A, Bonhoeffer T
Max-Planck-Institut für Psychiatrie, 82152 Martinsried, Germany.
J Neurosci. 1997 Dec 1;17(23):9270-84. doi: 10.1523/JNEUROSCI.17-23-09270.1997.
In the primary visual cortex, neurons with similar response properties are arranged in columns. As more and more columnar systems are discovered it becomes increasingly important to establish the rules that govern the geometric relationships between different columns. As a first step to examine this issue we investigated the spatial relationships between the orientation, ocular dominance, and spatial frequency domains in cat area 17. Using optical imaging of intrinsic signals we obtained high resolution maps for each of these stimulus features from the same cortical regions. We found clear relationships between orientation and ocular dominance columns: many iso-orientation lines intersected the borders between ocular dominance borders at right angles, and orientation singularities were concentrated in the center regions of the ocular dominance columns. Similar, albeit weaker geometric relationships were observed between the orientation and spatial frequency domains. The ocular dominance and spatial frequency maps were also found to be spatially related: there was a tendency for the low spatial frequency domains to avoid the border regions of the ocular dominance columns. This specific arrangement of the different columnar systems might ensure that all possible combinations of stimulus features are represented at least once in any given region of the visual cortex, thus avoiding the occurrence of functional blind spots for a particular stimulus attribute in the visual field.
在初级视皮层中,具有相似反应特性的神经元呈柱状排列。随着越来越多的柱状系统被发现,确立支配不同柱之间几何关系的规则变得越发重要。作为研究此问题的第一步,我们研究了猫17区中取向、眼优势和空间频率域之间的空间关系。利用内在信号的光学成像,我们从相同的皮层区域获得了这些刺激特征中每一个的高分辨率图谱。我们发现取向柱和眼优势柱之间存在明确的关系:许多等取向线与眼优势边界之间的边界成直角相交,且取向奇点集中在眼优势柱的中心区域。在取向和空间频率域之间也观察到了类似(尽管较弱)的几何关系。还发现眼优势图谱和空间频率图谱在空间上有关联:低空间频率域有避开眼优势柱边界区域的趋势。不同柱状系统的这种特定排列可能确保刺激特征的所有可能组合在视觉皮层的任何给定区域中至少被表征一次,从而避免视野中特定刺激属性出现功能盲点。