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兔视网膜中宽视野视锥双极细胞及通向颜色编码神经节细胞的蓝敏ON通路。

Wide-field cone bipolar cells and the blue-ON pathway to color-coded ganglion cells in rabbit retina.

作者信息

Famiglietti Edward V

机构信息

Department of Surgery (Ophthalmology), Brown University School of Medicine, Providence, Rhode Island, USA.

出版信息

Vis Neurosci. 2008 Jan-Feb;25(1):53-66. doi: 10.1017/S0952523808080061.

Abstract

Wide-field cone bipolar cells with sparse dendritic branching and proposed connectivity to blue cones were first identified in rabbit and cat. In rabbit, these were subdivided into type a (wa) and type b (wb), with axonal branching in sublamina a, and sublamina b, respectively, of the inner plexiform layer (IPL). Recent studies in rabbit support the earlier hypothesis of exclusive blue/short wavelength cone connectivity for both types. The homologues of wb cells (but not wa cells) have been identified in other mammals. The axonal branching of wa cone bipolar cells is shown to co-stratify with the dendrites of the "fiducial," type a starburst amacrine cell, although a few branches extend into sublamina b. The axon terminal of wb cone bipolar cells is shown to be narrowly stratified in stratum 5alpha, deep to the dendrites of the type b starburst amacrine cell. Rabbit ganglion cells postsynaptic to wa cells are unknown, but may include class III.2a cells, similarly stratified in the IPL. The wb axon terminal is shown here to co-stratify with and to make close, likely synaptic, contacts with the dendrites of a recently described morphological subtype of class II ganglion cell in rabbit retina, IIb2. Recent morpho-physiological correlation indicates that class IIb2 cells correspond to the blue-ON-center-X or ON-brisk-sustained ganglion cells, defined physiologically in rabbit. In contrast, the wb cell in cat retina must innervate the physiologically identified blue-ON-center-sluggish-sustained ganglion cell. In monkey retina, the wb-like bipolar cells apparently innervate a small, partly bi-stratified ganglion cell. Mammals share a common pathway from short-wavelength-sensitive (S/blue) cone photoreceptors to ON-center ganglion cells in sublamina b of the IPL, in the form of wb or wb-like cone bipolar cells, but the type of ganglion cell innervated appears to be particular, and may serve different functional roles in different mammalian orders.

摘要

具有稀疏树突分支且推测与蓝锥细胞有连接的广域视锥双极细胞最初是在兔和猫中被鉴定出来的。在兔中,这些细胞被细分为a型(wa)和b型(wb),其轴突分支分别位于内网状层(IPL)的a亚层和b亚层。兔的近期研究支持了这两种类型细胞均仅与蓝/短波长视锥细胞连接的早期假说。在其他哺乳动物中已鉴定出wb细胞(但未鉴定出wa细胞)的同源物。尽管有一些分支延伸到b亚层,但已表明wa视锥双极细胞的轴突分支与“基准”a型无长突细胞的树突共同分层。已表明wb视锥双极细胞的轴突终末在5α层狭窄分层,位于b型无长突细胞树突的深层。与wa细胞形成突触后的兔神经节细胞尚不清楚,但可能包括III.2a类细胞,它们在IPL中也有类似的分层。此处显示wb轴突终末与兔视网膜中最近描述的II类神经节细胞形态学亚型IIb2的树突共同分层,并与其形成紧密的、可能是突触的接触。最近的形态生理相关性表明,IIb2类细胞对应于在兔中生理上定义的蓝ON中心-X或ON快速持续神经节细胞。相比之下,猫视网膜中的wb细胞必定支配生理上鉴定出的蓝ON中心缓慢持续神经节细胞。在猴视网膜中,类wb双极细胞显然支配一种小的、部分双分层的神经节细胞。哺乳动物具有一条从短波长敏感(S/蓝)视锥光感受器到IPL的b亚层中ON中心神经节细胞的共同通路,其形式为wb或类wb视锥双极细胞,但所支配的神经节细胞类型似乎是特定的,并且可能在不同的哺乳动物目中发挥不同的功能作用。

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