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Custom built nonlinear optical crosslinking (NLO CXL) device capable of producing mechanical stiffening in ex vivo rabbit corneas

机译:定制的非线性光学交联(NLO CXL)设备能够在离体兔角膜中产生机械硬化

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摘要

The purpose of this study was to develop and test a nonlinear optical device to photoactivate riboflavin to produce spatially controlled collagen crosslinking and mechanical stiffening within the cornea. A nonlinear optical device using a variable numerical aperture objective was built and coupled to a Chameleon femtosecond laser. Ex vivo rabbit eyes were then saturated with riboflavin and scanned with various scanning parameters over a 4 mm area in the central cornea. Effectiveness of NLO CXL was assessed by evaluating corneal collagen auto fluorescence (CAF). To determine mechanical stiffening effects, corneas were removed from the eye and subjected to indentation testing using a 1 mm diameter probe and force transducer. NLO CXL was also compared to standard UVA CXL. The NLO CXL delivery device was able to induce a significant increase in corneal stiffness, comparable to the increase produced by standard UVA CXL.
机译:这项研究的目的是开发和测试一种非线性光学装置,以光激活核黄素来在角膜内产生空间控制的胶原交联和机械硬化。建立了使用可变数值孔径物镜的非线性光学设备,并将其耦合到Chameleon飞秒激光器。然后将离体兔眼用核黄素浸透,并在中央角膜的4毫米区域内用各种扫描参数进行扫描。 NLO CXL的有效性通过评估角膜胶原自身荧光(CAF)进行评估。为了确定机械增强效果,将角膜从眼睛上移开并使用直径为1 mm的探头和力传感器进行压痕测试。还比较了NLO CXL和标准UVA CXL。与标准UVA CXL产生的增加相比,NLO CXL输送装置能够引起角膜硬度的显着增加。

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