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溪鲈(Semotilus atromaculatus,鲤科,硬骨鱼纲)视网膜和色素上皮的精细结构

Fine structure of the retina and pigment epithelium in the creek chub, Semotilus atromaculatus (Cyprinidae, Teleostei).

作者信息

Collin S P, Collin H B, Ali M A

机构信息

Department of Psychology, University of Western Australia, Nedlands, Australia.

出版信息

Histol Histopathol. 1996 Jan;11(1):41-53.

PMID:8720447
Abstract

The structure of the light- and dark-adapted retina, the pigment epithelium and the choroid of the creek chub, Semotilus atromaculatus (Cyprinidae, Teleostei) is examined by light and electron microscopy. An extensive network of vitreal blood vessels emanating from the hyaloid artery enters the eye with the optic nerve and overlies the inner limiting membrane. This membrane closely apposes the fine protrusions of the Müller cell processes which traverse the entire retina, dividing the inner retina into alternating fascicles of ganglion cells and optic axons. The inner nuclear layer consists of bipolar, amacrine, Müller cell soma and two layers of horizontal cells. The outer plexiform layer possesses both rod spherules and cone pedicles. Each rod spherule consists of a single synaptic ribbon in either a triad or quadrad junctional arrangement within the invaginating terminal endings of the bipolar and horizontal cell processes. In contrast, cone pedicles possess multiple synaptic ribbons within their junctional complexes and, in the light-adapted state, the horizontal cell processes show spinule formation. Four photoreceptor types are identified on morphological criteria; unequal double cones, large single cones, small single cones and rods. All but the small single cones are capable of retinomotor responses. The rod to cone ratio is approximately 5:1 and the rods form two ill-defined rows in the light-adapted condition. The retinal pigment epithelium possesses two types of osmiophilic granules. These are bound within slender microvilli and migrate vitread to surround the photoreceptors in response to light. Bruch's membrane is trilaminar and the vascularised choroid consists of up to three layers of melanocytes. The endothelial borders of the choroidal blood vessels abutting the outer lamina of Bruch's membrane are fenestrated.

摘要

通过光学显微镜和电子显微镜检查了溪鲈(Semotilus atromaculatus,鲤科,硬骨鱼纲)的明适应和暗适应视网膜、色素上皮和脉络膜的结构。从玻璃体动脉发出的广泛的玻璃体血管网络与视神经一起进入眼睛,并覆盖在内界膜上。该膜紧密贴附于贯穿整个视网膜的米勒细胞突起的细小突起上,将视网膜内部分为交替排列的神经节细胞束和视神经轴突束。内核层由双极细胞、无长突细胞、米勒细胞胞体和两层水平细胞组成。外网状层既有视杆小球又有视锥小足。每个视杆小球在双极细胞和水平细胞突起的内陷终末内,以三联体或四联体连接排列的方式包含一条单一的突触带。相比之下,视锥小足在其连接复合体中具有多个突触带,并且在明适应状态下,水平细胞突起显示出棘状突起形成。根据形态学标准鉴定出四种光感受器类型;不等双锥、大单锥、小单锥和视杆。除了小单锥外,所有光感受器都能够进行视网膜运动反应。视杆与视锥的比例约为5:1,在明适应条件下,视杆形成两排不明确的细胞。视网膜色素上皮具有两种嗜锇颗粒。这些颗粒结合在细长的微绒毛内,并响应光线向玻璃体方向迁移以包围光感受器。布鲁赫膜是三层的,血管化的脉络膜由多达三层的黑素细胞组成。与布鲁赫膜外层相邻的脉络膜血管的内皮边界有窗孔。

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