Cang Jianhua, Wang Lupeng, Stryker Michael P, Feldheim David A
Department of Neurobiology and Physiology, Northwestern University, Evanston, Illinois 60208, USA.
J Neurosci. 2008 Oct 22;28(43):11015-23. doi: 10.1523/JNEUROSCI.2478-08.2008.
The orderly projections from retina to superior colliculus (SC) preserve a continuous retinotopic representation of the visual world. The development of retinocollicular maps depend on a combination of molecular guidance cues and patterned neural activity. Here, we characterize the functional retinocollicular maps in mice lacking the guidance molecules ephrin-A2, -A3, and -A5 and in mice deficient in both ephrin-As and structured spontaneous retinal activity, using a method of Fourier imaging of intrinsic signals. We find that the SC of ephrin-A2/A3/A5 triple knock-out mice contains functional maps that are disrupted selectively along the nasotemporal (azimuth) axis of the visual space. These maps are discontinuous, with patches of SC responding to topographically incorrect locations. The patches disappear in mice that are deficient in both ephrin-As and structured activity, resulting in a near-absence of azimuth map in the SC. These results indicate that ephrin-As guide the formation of functional topography in the SC, and patterned retinal activity clusters cells based on their correlated firing patterns. Comparison of the SC and visual cortical mapping defects in these mice suggests that although ephrin-As are required for mapping in both SC and visual cortex, ephrin-A-independent mapping mechanisms are more important in visual cortex than in the SC.
从视网膜到上丘(SC)的有序投射保留了视觉世界连续的视网膜拓扑表征。视网膜-上丘图谱的发育取决于分子引导线索和模式化神经活动的共同作用。在此,我们使用一种基于内在信号的傅里叶成像方法,对缺乏引导分子ephrin-A2、-A3和-A5的小鼠以及同时缺乏ephrin-As和有组织的自发视网膜活动的小鼠中的功能性视网膜-上丘图谱进行了表征。我们发现,ephrin-A2/A3/A5三敲除小鼠的上丘包含功能性图谱,这些图谱在视觉空间的鼻颞(方位)轴上被选择性破坏。这些图谱是不连续的,上丘的一些区域对地形上不正确的位置做出反应。在同时缺乏ephrin-As和有组织活动的小鼠中,这些区域消失了,导致上丘中几乎没有方位图谱。这些结果表明,ephrin-As引导上丘中功能性拓扑结构的形成,并且模式化的视网膜活动根据细胞的相关放电模式对细胞进行聚类。对这些小鼠中上丘和视觉皮层图谱缺陷的比较表明,尽管ephrin-As对于上丘和视觉皮层中的图谱形成都是必需的,但不依赖ephrin-A的图谱形成机制在视觉皮层中比在上丘中更重要。