Sincich L C, Blasdel G G
Program in Neuroscience and Department of Neurobiology, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Neurosci. 2001 Jun 15;21(12):4416-26. doi: 10.1523/JNEUROSCI.21-12-04416.2001.
One important aspect of the functional architecture of primary visual cortex is the circuitry that accounts for the receptive field properties of neurons. The anatomy that underlies retinotopy and ocular dominance is well known, but no anatomical structure related to orientation selectivity has been found in primates. We examined whether the arrangement of local axon systems projecting within the cortical layers might be correlated with orientation preference in New World monkeys. We found that axons in layer 3 spread out from the site of a tracer injection in an anisotropic manner and that this elongated distribution is aligned with the preferred orientation recorded at each site. Moreover, within a few degrees of the foveal representation, the majority of the axon terminals fall within or just outside of the limits of the cortical mapping of the classical receptive field. Thus local axons produce a field of monosynaptic excitation that aligns with orientation axes and reaches neurons that have receptive fields which are adjacent in visual space.
初级视皮层功能架构的一个重要方面是解释神经元感受野特性的神经回路。视网膜拓扑和眼优势的解剖学基础是众所周知的,但在灵长类动物中尚未发现与方向选择性相关的解剖结构。我们研究了在皮层各层内投射的局部轴突系统的排列是否与新大陆猴的方向偏好相关。我们发现,第3层中的轴突以各向异性的方式从示踪剂注射部位散开,并且这种拉长的分布与在每个部位记录的偏好方向对齐。此外,在中央凹表征的几度范围内,大多数轴突终末落在经典感受野皮层映射的边界内或边界外。因此,局部轴突产生一个与方向轴对齐的单突触兴奋场,并到达在视觉空间中具有相邻感受野的神经元。