Freeman T C, James A C, Mark R F
Developmental Neurobiology Group, Research School of Biological Sciences, Australian National University, Canberra.
J Comp Neurol. 1997 Apr 21;380(4):472-84. doi: 10.1002/(sici)1096-9861(19970421)380:4<472::aid-cne4>3.0.co;2-z.
When do the developing connections between mammalian retinal ganglion cells and the superior colliculus become functional? Evoked potentials elicited by optic nerve stimulation in the pouch young of the wallaby were used to answer the question. Up to 42 days after birth, the evoked potentials in the colliculus appeared to be generated by axon conduction. Synaptic activity was first recorded from the rostral colliculus at 45 days, and was found to be progressively more caudal, spreading to cover the colliculus, by 65 days. From the earliest indication of synaptic activity until eye opening at 140 days, current source density (CSD) analysis consistently showed the same basic pattern: an initial deep sink from synaptic activity of fast (Y type) fibres, and a more superficial longer-latency sink from slower (W type) fibres. All features became more clearly delineated with age. The indirect retinocorticocollicular connection appeared between 134 days and 146 days. The ability of optic nerve fibres to sustain action potentials precedes their formation of functional synapses with collicular neurons, which happens abruptly at three months before eye opening. CSD analysis showed that the relationship between the conduction velocity of optic nerve fibres and their depth of termination is evident from the first signs of synapse formation.
哺乳动物视网膜神经节细胞与上丘之间正在发育的连接何时开始发挥功能?通过对沙袋鼠育儿袋幼崽的视神经刺激诱发的电位来回答这个问题。出生后42天内,上丘中的诱发电位似乎是由轴突传导产生的。在45天时首次从嘴侧上丘记录到突触活动,到65天时发现其逐渐向尾侧扩散,覆盖整个上丘。从最早出现突触活动迹象到140天睁眼,电流源密度(CSD)分析始终显示出相同的基本模式:快速(Y型)纤维的突触活动产生初始的深部电流汇集,较慢(W型)纤维产生更浅表、潜伏期更长的电流汇集。所有特征随着年龄增长变得更加清晰。间接视网膜皮质上丘连接在134天至146天之间出现。视神经纤维维持动作电位的能力先于它们与上丘神经元形成功能性突触,这种情况在睁眼前三周突然发生。CSD分析表明,从突触形成的最初迹象就可以看出视神经纤维的传导速度与其终止深度之间的关系。