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Simultaneously imaging and quantifying in vivo mechanical properties of crystalline lens and cornea using optical coherence elastography with acoustic radiation force excitation

机译:用声辐射力激励的光学相干弹性术,同时成像和定量晶体透镜和角膜的体内机械性能

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摘要

The crystalline lens and cornea comprise the eye’s optical system for focusing light in human vision. The changes in biomechanical properties of the lens and cornea are closely associated with common diseases, including presbyopia and cataract. Currently, most in vivo elasticity studies of the anterior eye focus on the measurement of the cornea, while lens measurement remains challenging. To better understand the anterior segment of the eye, we developed an optical coherence elastography system utilizing acoustic radiation force excitation to simultaneously assess the elasticities of the crystalline lens and the cornea in vivo. A swept light source was integrated into the system to provide an enhanced imaging range that covers both the lens and the cornea. Additionally, the oblique imaging approach combined with orthogonal excitation also improved the image quality. The system was tested through first ex vivo and then in vivo experiments using a rabbit model. The elasticities of corneal and lens tissue in an excised normal whole-globe and a cold cataract model were measured to reveal that cataractous lenses have a higher Young’s modulus. Simultaneous in vivo elasticity measurements of the lens and cornea were performed in a rabbit model to demonstrate the correlations between elasticity and intraocular pressure and between elasticity and age. To the best of our knowledge, we demonstrated the first in vivo elasticity of imaging of both the lens and cornea using acoustic radiation force-optical coherence elastography, thereby providing a potential powerful clinical tool to advance ophthalmic research in disorders affecting the lens and the cornea.
机译:结晶透镜和角膜构成眼睛的光学系统,用于聚焦人类视力。晶状体和角膜的生物力学性质的变化与常见疾病密切相关,包括老花眼和白内障。目前,大多数在体内弹性研究的前眼睛重点关注角膜的测量,而镜头测量仍然具有挑战性。为了更好地理解眼睛的前段,我们开发了利用声学辐射力激发的光学相干弹性摄影系统,以同时评估晶体透镜的弹性和体内的角膜。将扫描光源集成到系统中以提供增强的成像范围,其覆盖镜片和角膜。另外,倾斜成像方法与正交励磁相结合也改善了图像质量。通过第一exVivo测试系统,然后在使用兔模型进行体内实验。测量了切片正常全球和冷白内障模型中的角膜和晶状体组织的弹性,揭示了白曲面镜片具有更高的杨氏模量。在兔模型中进行镜片和角膜的体内弹性测量以证明弹性和眼内压力与弹性和年龄之间的相关性。据我们所知,我们通过声辐射力 - 光学相干弹性术来证明了第一款镜片和角膜成像的体内弹性,从而提供了潜在的强大的临床工具,以推进影响镜片和角膜的疾病的眼科研究。

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