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首页> 外文期刊>Journal of refractive surgery >Biomechanical Impact of Localized Corneal Cross-linking Beyond the Irradiated Treatment Area.
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Biomechanical Impact of Localized Corneal Cross-linking Beyond the Irradiated Treatment Area.

机译:局部角膜交联在辐照处理区域之外的生物力学冲击。

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摘要

To investigate the stiffening effect of localized corneal cross-linking (L-CXL) within and beyond the irradiated region in three dimensions. Ten porcine eyes were debrided of epithelium and incrementally soaked with 0.1% riboflavin solution. Using a customized, sharp-edged mask, half of the cornea was blocked while the other half was exposed to blue light (447 nm). The three-dimensional biomechanical properties of each cornea were then measured via Brillouin microscopy. An imaging system was used to quantify the optimal transition zone between cross-linked and non-cross-linked sections of the cornea when considering light propagation and scattering. A broad transition zone of 610 μm in width was observed between the fully cross-linked and non-cross-linked sections, indicating the stiffening response extended beyond the irradiated region. Light propagation and the scattering induced by the riboflavin-soaked cornea accounted for a maximum of 25 and 159 ± 3.2 μm, respectively. The stiffening effect of L-CXL extends beyond that of the irradiated area. When considering L-CXL protocols clinically, it will be important to account for increased stiffening in surrounding regions. [J Refract Surg. 2019;35(4):253-260.].
机译:研究局部角膜交联(L-CXL)在辐照区域三维内部的加强效应。十只猪眼睛被脱落的上皮,促进0.1%核黄素溶液。使用定制的尖锐的掩模,在另一半面暴露于蓝光(447nm)的同时阻止了一半的角膜。然后通过布里渊显微镜测量每个角膜的三维生物力学性质。在考虑光传播和散射时,使用成像系统来量化角膜交联和非交联部分之间的最佳过渡区。在完全交联的和非交联部分之间观察到宽度为610μm的宽过渡区,表示延伸超出照射区域的加强响应。核黄素 - 浸渍角膜诱导的光传播和散射分别占25和159±3.2μm。 L-CXL的加强效果延伸超过辐照区域的延伸。在临床上考虑L-CXL协议时,重要的是考虑在周围地区的加强增加。 [j屈服surg。 2019; 35(4):253-260。]。

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