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In-vivo 3D corneal elasticity using air-coupled ultrasound optical coherence elastography

机译:使用空气耦合超声光学相干弹性成像的体内3D角膜弹性

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Corneal elasticity can resist elastic deformations under intraocular pressure to maintain normal corneal shape, which has a great influence on corneal refractive function. Elastography can measure tissue elasticity and provide a powerful tool for clinical diagnosis. Air-coupled ultrasound optical coherence elastography (OCE) has been used in the quantification of ex-vivo corneal elasticity. However, in-vivo imaging of the cornea remains a challenge. The 3D air-coupled ultrasound OCE with an axial motion artifacts correction algorithm was developed to distinguish the in-vivo cornea vibration from the axial eye motion in anesthetized rabbits and visualize the elastic wave propagation clearly. The elastic wave group velocity of in-vivo rabbit cornea was measured to be 5.96?±?0.55 m/s, which agrees with other studies. The results show the potential of 3D air-coupled ultrasound OCE with an axial motion artifacts correction algorithm for quantitative in-vivo assessment of corneal elasticity.
机译:角膜弹性可以抵抗在眼压下的弹性变形,以维持正常的角膜形状,这对角膜屈光功能有很大的影响。弹性成像可以测量组织弹性并为临床诊断提供强大的工具。空气耦合超声光学相干弹性成像(OCE)已用于定量离体角膜弹性。然而,角膜的体内成像仍然是一个挑战。开发了具有轴向运动伪影校正算法的3D空气耦合超声OCE,以区分麻醉兔子中的体内角膜振动与轴向眼运动,并清晰地观察弹性波传播。体内兔角膜的弹性波群速度测得为5.96?±?0.55 m / s,与其他研究一致。结果显示了具有轴向运动伪影校正算法的3D空气耦合超声OCE潜力,可以在体内定量评估角膜弹性。

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