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[急性和持续性高眼压对兔眼前房角组织超微结构的影响]

[The effect of acute and persistent ocular hypertension on ultrastructure in rabbit tissues of anterior chamber angle].

作者信息

Liao T J, Bai C X, Zhang L Z

机构信息

Department of Ophthalmology, People's Hospital, Lanzhou.

出版信息

Zhonghua Yan Ke Za Zhi. 1994 Sep;30(5):382-5.

PMID:7805546
Abstract

Sclero-circular compression operation was performed on 20 unilateral rabbit eyes to make a model of intraocular hypertension which persisted for 3 days, 1, 3 and 4 weeks respectively in 4 groups of rabbits and another 4 rabbits were used as normal controls. The trabecular meshwork and aqueous plexus of the experimental rabbits' eyes were examined under transmission electron microscope on various post-operative days: 3 days, 1, 3 and 4 weeks. It was discovered that the corneo-scleral and uveal trabecular meshworks were obviously distended and their core collagenous and elastoid fibers were hyperplastic, the phenomenon being more marked with the prolongation of the duration of the intraocular hypertension. Many endothelial cells were detached from the trabecular cords and freely located in the intertrabecular spaces. Persistent hyperplasia of collagenous fibers and accumulation of extracellular plague materials occurred in the endothelial meshwork, leading to its compactness. The giant vacuoles in the endothelial cells lining the inner wall of the canal of aqueous plexus were gradually decreased in number and the cytoplasm of the cells became attenuated and some fenestrations appeared. The results show that the main site of the resistance of the aqueous outflow occurring during intraocular hypertension is at endothelial meshwork and the above experimental morphological changes are quite similar to those of glaucoma patients.

摘要

对20只兔的单眼进行巩膜环形压迫手术以制作高眼压模型,4组兔的高眼压状态分别持续3天、1周、3周和4周,另外4只兔作为正常对照。在术后不同时间点(3天、1周、3周和4周),对实验兔眼的小梁网和房水丛进行透射电镜检查。结果发现,角膜巩膜小梁网和葡萄膜小梁网明显扩张,其核心胶原纤维和弹性纤维增生,随着高眼压持续时间延长,这种现象更加明显。许多内皮细胞从小梁索上脱落,游离于小梁间隙。内皮网中胶原纤维持续增生,细胞外斑块物质积聚,导致内皮网致密。房水丛内壁衬里的内皮细胞中的巨大空泡数量逐渐减少,细胞胞质变薄,出现一些窗孔。结果表明,高眼压时房水流出阻力的主要部位在内皮网,上述实验形态学变化与青光眼患者的变化非常相似。

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