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The role of ultraviolet-B in corneal healing following excimer Laser in situ Keratomileusis

机译:准分子激光原位角膜磨镶术中紫外线B在角膜愈合中的作用

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Corneal photoablation with the 193 nm argon fluorid excimer laser during photorefractive keratectomy (PRK) in high diopter range is frequently associated with subepithelial haze and consequent refractive regression due to avascular corneal wound healing. The wound healing response can be augmented by Ultraviolet-B (UV-B) exposure originating from sun or solarium. Clinically Laser in situ Keratomileusis (LASIK) even in high diopter range is associated with less subepithelial haze and regression than PRK. In an animal model, the morphologic changes of the rabbit cornea were evaluated following LASIK and secondary UV-B exposure. Light microsopic changes were found to be insignificant. Transmission electron microscopy (TEM) normal epithelium, epithelial adhesion structures and normal anterior stroma showed in the LASIK treated UV-B irradiated rabbit eyes. Around the peripheral LASIK cut, migrating keratocytes with pseudopodia were observed. Under the flap (160 μm depth) the overall stromal collagen structure was normal, some activated keratocytes and mild extracellular matrix formation within and around keratocytes were noted. Within activated keratocytes TEM showed prominent rough endoplasmic reticulum, Golgi apparatus, mitochondria and extracellular vacuoles, which showed resolution with time. These changes were much milder than in PRK treated-UV-B irradiated eyes. Secondary UV-B caused no long-term disturbance in corneal transparency in LASIK and UV-B treated rabbit eyes.
机译:在高屈光度范围内的屈光性角膜切除术(PRK)期间,用193 nm氟化氩准分子激光进行角膜光消融通常与上皮下雾度相关,并由于无血管角膜伤口愈合而导致屈光退化。紫外线-B(UV-B)暴露于太阳或日光浴可以增强伤口的愈合反应。即使在高屈光度范围内,临床上原位激光角膜磨镶术(LASIK)的上皮下雾度和消退率也低于PRK。在动物模型中,在LASIK和二次UV-B暴露后评估了兔角膜的形态变化。发现轻微变化不明显。透射电子显微镜(TEM)正常上皮,上皮粘附结构和正常前基质在经LASIK处理的UV-B辐照兔眼中可见。在周边LASIK切口处,观察到假足导致角膜细胞迁移。在皮瓣下(深度160μm),整个基质胶原结构正常,注意到一些活化的角膜细胞以及在角膜细胞内和周围轻度的细胞外基质形成。在活化的角膜细胞内,TEM显示出明显的粗糙的内质网,高尔基体,线粒体和细胞外液泡,其随着时间显示分辨率。这些变化比经PRK处理的UV-B照射的眼睛温和得多。继发性UV-B不会对LASIK和UV-B治疗的兔眼的角膜透明性造成长期干扰。

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