Famiglietti Edward V
Department of Ophthalmology, Rhode Island Hospital, Providence, Rhode Island 02903, USA.
J Comp Neurol. 2005 Apr 18;484(4):357-91. doi: 10.1002/cne.20433.
The type and topographic distribution of synaptic inputs to a directionally selective (DS) rabbit retinal ganglion cell (GC) were examined and were compared with those received by two other complex GC types. The percentage of cone bipolar cell (BC) input, presumably an index of sustained responses and simple receptive field properties, is much higher than expected for complex GCs in reference to previous reports in other species: approximately 20% for the type 1 bistratified ON-OFF DS GC and for a multistratified GC, and approximately 40% for the small-tufted local-edge-detector GC. Consistent with a previous study (Famiglietti [1991] J. Comp. Neurol. 309:40-70), no ultrastructural evidence is found for inhibitory synapses from starburst amacrine cells to the ON-OFF DS GC. The density of inputs to the ON-OFF DS GC is high and rather evenly distributed over the dendritic tree. Clustering of inputs brings excitatory and inhibitory inputs into proximity, but the strict on-path condition of more proximal inhibitory inputs, favoring shunting inhibition, is not satisfied. Prominent BC input and its regional variation suggest that BCs play key roles in DS neural circuitry, both pre- and postsynaptic to the ON-OFF DS GC, according to a bilayer model (Famiglietti [1993] Invest. Ophthalmol. Vis. Sci. 34:S985). Asymmetry of inhibitory amacrine cell input may signify a region on the preferred side of the receptive field, the inhibition-free zone (Barlow and Levick [1965] J. Physiol. (Lond.) 178:477-504), supporting a role for postsynaptic integration in the DS mechanism. Prominent BC input to the local-edge-detector, often without accompanying amacrine cell input, indicates presynaptic integration in forming its trigger feature.
研究了定向选择性(DS)兔视网膜神经节细胞(GC)的突触输入类型和拓扑分布,并将其与其他两种复杂GC类型所接收的突触输入进行了比较。视锥双极细胞(BC)输入的百分比,可能是持续反应和简单感受野特性的一个指标,相对于之前其他物种复杂GC的报道而言,要高得多:1型双分层开-关DS GC和多层GC约为20%,小簇状局部边缘检测GC约为40%。与之前的一项研究(Famiglietti [1991] J. Comp. Neurol. 309:40 - 70)一致,未发现从星爆无长突细胞到开-关DS GC的抑制性突触的超微结构证据。开-关DS GC的输入密度很高,并且在树突树上分布相当均匀。输入的聚集使兴奋性和抑制性输入靠近,但近端抑制性输入更严格的通路条件(有利于分流抑制)并不满足。显著的BC输入及其区域差异表明,根据双层模型(Famiglietti [1993] Invest. Ophthalmol. Vis. Sci. 34:S985),BC在DS神经回路中,在开-关DS GC的突触前和突触后都起着关键作用。抑制性无长突细胞输入的不对称可能表示感受野偏好侧的一个区域,即无抑制区(Barlow和Levick [1965] J. Physiol. (Lond.) 178:477 - 504),支持突触后整合在DS机制中的作用。局部边缘检测GC有显著的BC输入,通常没有伴随的无长突细胞输入,表明在形成其触发特征时存在突触前整合。