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Line-Field Optical Coherence Tomography as a tool for In vitro characterization of corneal biomechanics under physiological pressures

机译:线场光学相干断层扫描作为在生理压力下体外表征角膜生物力学的工具

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There has been a lot of interest in accurately characterising corneal biomechanical properties under intraocular pressure (IOP) to help better understand ocular pathologies that are associated with elevated IOP. This study investigates the novel use of Line-Field Optical Coherence Tomography (LF-OCT) as an elastographic tool for accurately measuring mechanical properties of porcine corneas based on volumetric deformation following varying IOPs. A custom-built LF-OCT was used to measure geometrical and corneal surface displacement changes in porcine corneas under a range of IOPs, from 0-60?mmHg. Corneal thickness, elastic properties and hysteresis were calculated as a function of pressure. In addition, the effects of hydration were explored. We found that the elastic modulus increased in a linear fashion with IOP. Corneal thickness was found to reduce with IOP, decreasing 14% from 0 to 60?mmHg. Prolonged hydration in phosphate buffered saline (PBS) was found to significantly increase the elastic modulus and corneal hysteresis. Our study demonstrates that LF-OCT can be used to accurately measure the elastic properties based on volumetric deformation following physiological pressures. Furthermore, we show that prolonged hydration in PBS has a significant effect on the measured corneal properties.
机译:在眼内压(IOP)下准确表征角膜生物力学特性以帮助更好地了解与IOP升高有关的眼部病理学已经引起了很多兴趣。这项研究调查了线场光学相干断层扫描(LF-OCT)作为弹性成像工具的新颖用途,该工具可根据变化的IOP后的体积变形准确测量猪角膜的力学性能。使用定制的LF-OCT在0-60?mmHg的一系列IOPs下测量猪角膜的几何和角膜表面位移变化。计算角膜厚度,弹性和滞后随压力的变化。另外,探讨了水合作用。我们发现,弹性模量随IOP呈线性增加。发现角膜厚度随着眼压的增加而减少,从0到60?mmHg减少14%。发现在磷酸盐缓冲盐水(PBS)中长时间水合作用会显着增加弹性模量和角膜滞后现象。我们的研究表明,LF-OCT可用于根据生理压力后的体积变形准确测量弹性性能。此外,我们表明在PBS中延长的水合作用对所测得的角膜性质有重大影响。

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