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Monitoring of cornea elastic properties changes during UV-A/riboflavin-induced corneal collagen cross-linking using supersonic shear wave imaging: A pilot study

机译:超声剪切波成像监测UV-A /核黄素诱导的角膜胶原交联过程中的角膜弹性特性变化:一项初步研究

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Purpose. Keratoconus disease or post-LASIK corneal ectasia are increasingly treated using UV-A/riboflavin-induced corneal collagen cross-linking (CXL). However, this treatment suffers from a lack of techniques to provide an assessment in real-time of the CXL effects. Here, we investigated the potential interest of corneal elasticity as a biomarker of the efficacy of this treatment. Methods. For this purpose, supersonic shear wave imaging (SSI) was performed both ex vivo and in vivo on porcine eyes before and after CXL. Based on ultrasonic scanners providing ultrafast frame rates (~30 kHz), the SSI technique generates and tracks the propagation of shear waves in tissues. It provides two- and three-dimensional (2-D and 3-D) quantitative maps of the corneal elasticity. Results. After CXL, quantitative maps of corneal stiffness clearly depicted the cross-linked area with a typical 200-μm lateral resolution. The CXL resulted in a 56% ± 15% increase of the shear wave speed for corneas treated in vivo (n = 4). Conclusions. The in vivo CXL experiments performed on pigs demonstrated that the quantitative estimation of local stiffness and the 2-D elastic maps of the corneal surface provide an efficient way to monitor the local efficacy of corneal cross-linking.
机译:目的。使用UV-A /核黄素诱导的角膜胶原交联剂(CXL)越来越多地治疗圆锥角膜病或LASIK术后角膜扩张。但是,这种治疗方法缺乏实时提供CXL效果评估的技术。在这里,我们调查了角膜弹性作为这种治疗功效的生物标志物的潜在兴趣。方法。为此,在CXL之前和之后在猪眼上进行离体和体内超音波剪切波成像(SSI)。基于提供超快帧频(〜30 kHz)的超声扫描仪,SSI技术生成并跟踪组织中剪切波的传播。它提供了角膜弹性的二维和三维(2-D和3-D)定量图。结果。 CXL后,角膜僵硬度的定量图清楚地描绘了交联区域,其横向分辨率通常为200μm。对于体内治疗的角膜,CXL导致剪切波速度增加了56%±15%(n = 4)。结论在猪上进行的体内CXL实验表明,定量估计局部刚度和角膜表面的二维弹性图可提供一种有效的方法来监测角膜交联的局部功效。

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