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The effect of intraoperative retinal manipulation on the underlying retinal pigment epithelium: an experimental study.

机译:术中视网膜操作对基础视网膜色素上皮的影响:一项实验研究。

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PURPOSE: Retinal pigment epithelial changes described after vitreoretinal surgery may result from localized compression injury caused by intentional or inadvertent contact with vitreoretinal instruments. The authors evaluated these changes resulting from manipulation of the retina without frank retinal injury. METHODS: One eye each of six pigmented rabbits underwent surgery during which the inner retinal surface was touched at several points with a 20-gauge silicone-tipped subretinal fluid cannula without causing a retinal break or subretinal hemorrhage. The rabbits were followed-up with indirect ophthalmoscopy, fundus photography, and fluorescein angiography, and were killed at 1 hour, 1 week, or 2 weeks. Light microscopy was used for histopathologic evaluation. RESULTS: On fluorescein angiography, diffuse leakage noted at the injury sites significantly decreased by the fourth day and almost completely disappeared by the second week. Disruption of photoreceptor outer segments and retinal pigment epithelium in the early specimens, and irregular pigmentation, proliferation, and migration of the retinal pigment epithelium at 1 and 2 weeks were the prominent features on histopathologic examination. CONCLUSIONS: Intraoperative manipulation of the attached retina may cause significant pigment epithelium displacement and proliferation and varying degrees of disorganization of normal retinal architecture in the absence of clinically evident retinal breaks and subretinal hemorrhages.
机译:目的:玻璃体视网膜手术后描述的视网膜色素上皮变化可能是由于有意或无意接触玻璃体视网膜器械而引起的局部压迫性损伤。作者评估了在没有坦率视网膜损伤的情况下操作视网膜而导致的这些变化。方法:每只六只有色兔子的一只眼睛进行手术,在此过程中,用20号硅胶尖端视网膜下液套管在几处触摸视网膜内表面,而不会引起视网膜破裂或视网膜下出血。对兔子进行间接检眼镜,眼底照相和荧光素血管造影术随访,并在1小时,1周或2周时处死。光学显微镜用于组织病理学评估。结果:在荧光素血管造影上,在损伤部位发现的弥漫性渗漏在第四天显着减少,而在第二周几乎完全消失。早期标本中的感光细胞外段和视网膜色素上皮破裂,以及在1和2周时视网膜色素上皮的不规则色素沉着,增殖和迁移是组织病理学检查的主要特征。结论:在没有临床上明显的视网膜断裂和视网膜下出血的情况下,术中对附着的视网膜进行操作可能会导致色素上皮明显移位和增生,并导致正常视网膜结构发生不同程度的混乱。

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