Huberman Andrew D
Department of Neurobiology, Stanford University School of Medicine, Stanford, CA 94305, USA.
Curr Opin Neurobiol. 2007 Feb;17(1):73-80. doi: 10.1016/j.conb.2007.01.005. Epub 2007 Jan 24.
Eye-specific visual connections are a prominent model system for exploring how precise circuits develop in the CNS and, in particular, for addressing the role of neural activity in synapse elimination and axon refinement. Recent experiments have identified the features of spontaneous retinal activity that mediate eye-specific retinogeniculate segregation, the synaptic events associated with this process, and the importance of axon guidance cues for organizing the overall layout of eye-specific maps. The classic model of ocular dominance column development, in which spontaneous retinal activity plays a crucial role, has also gained new support. Although many outstanding questions remain, the mechanisms that instruct eye-specific circuit development are becoming clear.
特定于眼睛的视觉连接是用于探索精确的神经回路如何在中枢神经系统中发育的一个重要模型系统,尤其是用于研究神经活动在突触消除和轴突细化中的作用。最近的实验已经确定了介导特定于眼睛的视网膜-膝状体分离的自发视网膜活动的特征、与该过程相关的突触事件,以及轴突导向线索对于组织特定于眼睛的图谱的整体布局的重要性。经典的眼优势柱发育模型,其中自发视网膜活动起着关键作用,也获得了新的支持。尽管仍有许多突出问题,但指导特定于眼睛的神经回路发育的机制正变得清晰起来。