Ruthazer Edward S, Cline Hollis T
Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA.
J Neurobiol. 2004 Apr;59(1):134-46. doi: 10.1002/neu.10344.
The development of orderly topographic maps in the central nervous system (CNS) results from a collaboration of chemoaffinity cues that establish the coarse organization of the projection and activity-dependent mechanisms that fine-tune the map. Using the retinotectal projection as a model system, we describe evidence that biochemical tags and patterned neural activity work in parallel to produce topographically ordered axonal projections. Finally, we review recent experiments in other CNS projections that support the proposition that cooperation between molecular guidance cues and activity-dependent processes constitutes a general paradigm for CNS map formation.
中枢神经系统(CNS)中有序拓扑图的形成源于化学亲和性线索与活动依赖机制的协同作用,前者确立投射的粗略组织,后者对图谱进行微调。我们以视网膜-脑顶盖投射作为模型系统,描述了生化标记和模式化神经活动并行作用以产生拓扑有序轴突投射的证据。最后,我们回顾了最近在其他中枢神经系统投射中的实验,这些实验支持了分子引导线索与活动依赖过程之间的合作构成中枢神经系统图谱形成的一般模式这一观点。