Simon D K, O'Leary D D
Molecular Neurobiology Laboratory, Salk Institute, La Jolla, CA 92037.
Brain Res Dev Brain Res. 1992 Oct 23;69(2):167-72. doi: 10.1016/0165-3806(92)90155-p.
Topographic order in the rat retinocollicular projection emerges from an initially diffuse projection during an early postnatal remodeling period that is coincident with the period of naturally occurring ganglion cell death. Here, we examine the relationship between a retinal axon's position along the medial-lateral axis as it enters the superior colliculus (SC) and its ability to form an appropriately positioned arbor and survive the remodeling period. At E18-E19, prior to map remodeling, axons labeled with focal DiI injections in the periphery of temporal, nasal, superior or inferior retina are widespread along the medial-lateral SC axis. At P12, after remodeling, the distributions of axons remain widespread over the medial-lateral SC axis relative to the positioning of their terminal arborizations, and resemble the distributions labeled at E18-E19, with the exception that the small proportion of axons most widely mispositioned along the medial-lateral SC axis are less frequent. These data indicate that the most widely mispositioned retinal axons are preferentially eliminated, but that a high proportion of retinal axons mispositioned along the medial-lateral axis as they enter the SC can correct their position, form topographically appropriate arbors, and survive the remodeling period.
大鼠视网膜-上丘投射的拓扑顺序在出生后早期重塑期从最初的弥散投射中形成,这一时期与自然发生的神经节细胞死亡期相吻合。在此,我们研究了视网膜轴突进入上丘(SC)时沿内侧-外侧轴的位置与其形成位置适当的树突并在重塑期存活的能力之间的关系。在E18-E19,即图谱重塑之前,用局灶性DiI注射标记的颞侧、鼻侧、上方或下方视网膜周边区域的轴突沿内侧-外侧SC轴广泛分布。在P12,重塑后,相对于其终末分支的定位,轴突的分布在整个内侧-外侧SC轴上仍然广泛,并且类似于E18-E19标记的分布,不同之处在于沿内侧-外侧SC轴定位错误最严重的一小部分轴突出现频率较低。这些数据表明,定位错误最严重的视网膜轴突被优先消除,但大量在进入SC时沿内侧-外侧轴定位错误的视网膜轴突能够纠正其位置,形成拓扑结构适当的树突,并在重塑期存活下来。