首页> 外文期刊>Journal of refractive surgery >Corneal Strain Induced by Intracorneal Ring Segment Implantation Visualized With Optical Coherence Elastography.
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Corneal Strain Induced by Intracorneal Ring Segment Implantation Visualized With Optical Coherence Elastography.

机译:角膜内环段植入诱导的角膜应变通过光学相干弹性成像可视化。

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摘要

To record the axial strain field in the cornea directly after creating a stromal tunnel and implanting an intracorneal ring segment (ICRS). Freshly enucleated porcine eyes were obtained and assigned to either ICRS implantation, tunnel creation only, or virgin control groups. Immediately after manual tunnel creation and ICRS positioning, the entire eye globe was mounted on a customized holder and intraocular pressure (IOP) was adjusted to 15 mm Hg. Then, IOP was inreased to 20 mm Hg, in steps of 1 mm Hg. At each step, an optical coherence tomography volume scan was recorded. Displacements between subsequent scans were retrieved using a vector-based phase difference method. The induced corneal strain direction was determined by taking the axial gradient. In addition, corneal surface was detected and sagittal curvature maps computed. Corneal tissue presented a localized compressive strain in the direct vicinity of the stromal tunnel, which was independent of IOP change. The central and peripheral (exterior to the ICRS) cornea demonstrated compressive strains on IOP increase, and tensile strains on IOP decrease. ICRS implantation induced an annular-shaped tensile strain at its inner border, particularly during IOP increase. The compressive strains close to the tunnel remained after ICRS implantation. Corneal curvature changes were concentrated on regions where strain was induced. ICRS implantation induces localized strains in the regions subjected to refractive changes, suggesting that corneal strain and curvature are directly related. Studying corneal strain in response to surgical intervention may provide new insights on underlying working principles.J Refract Surg . 2022;38(3):210-216. .
机译:在创建基质隧道并植入角膜内环段 (ICRS) 后直接记录角膜中的轴向应变场。获得新鲜去核的猪眼,并将其分配到ICRS植入组、仅隧道创建组或原始对照组。在手动创建隧道和ICRS定位后,立即将整个眼球安装在定制的支架上,并将眼压(IOP)调整为15毫米汞柱。然后,以 1 mm Hg 的步长将眼压降低至 20 mm Hg。在每个步骤中,都记录了光学相干断层扫描体积扫描。使用基于矢量的相位差方法检索后续扫描之间的位移。通过取轴向梯度确定诱发角膜应变方向。此外,还检测了角膜表面并计算了矢状曲率图。角膜组织在基质隧道附近呈现局部压迫应变,这与眼压变化无关。中央和外周(ICRS外部)角膜在眼压升高时表现出压迫应变,而在眼压上显示拉伸应变降低。ICRS植入在其内缘引起环形拉伸应变,特别是在眼压增加期间。ICRS植入后,靠近隧道的压缩应变仍然存在。角膜曲率变化集中在诱发应变的区域。ICRS植入在屈光变化的区域诱导局部应变,表明角膜应变和曲率直接相关。研究手术干预对角膜拉伤的反应可能会为基本工作原理提供新的见解。[J 折射外科杂志 . 2022;38(3):210-216.].

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