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Deep Laser-Assisted Lamellar Anterior Keratoplasty With Microkeratome-Cut Grafts

机译:深层激光辅助的层状角膜前切开术与微角膜刀切开移植术

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Purpose:The goals of this laboratory study were to evaluate the interface quality in laser-assisted lamellar anterior keratoplasty (LALAK) with microkeratome-cut grafts and achieve good graft-host apposition.Methods:Simulated LALAK surgeries were performed on 6 pairs of eye-bank corneoscleral discs. Anterior lamellar grafts were precut with microkeratomes. Deep femtosecond (FS) laser cuts were performed on host corneas followed by excimer laser smoothing. Different parameters of FS laser cuts and excimer laser smoothing were tested. Optical coherence tomography was used to measure corneal pachymetry and evaluate graft-host apposition. The interface quality was quantified in a masked fashion using a 5-point scale based on scanning electron microscopy images.Results:Deep FS laser cuts at 226 to 380 m resulted in visible ridges on the host bed. Excimer laser smoothing with a central ablation depth of 29 m and saline as a smoothing agent did not adequately reduce ridges (score = 4.0). Deeper excimer laser ablation of 58 m and Optisol-GS as a smoothing agent smoothed ridges to an acceptable level (score = 2.1). Same sizing of the graft and host cut diameters with an approximately 50-m deeper host side cut relative to the central graft thickness provided the best graft-host fit.Conclusions:Deep excimer laser ablation with a viscous smoothing agent was needed to remove ridges after deep FS lamellar cuts. The host side cut should be deep enough to accommodate thicker graft peripheral thickness compared with the center. This LALAK design provides smooth lamellar interfaces, moderately thick grafts, and good graft-host fits.
机译:目的:本实验室研究的目的是评估采用微型角膜刀切开的移植物进行激光辅助的层状前角膜成形术(LALAK)的界面质量,并获得良好的移植物与宿主并置的方法。库角膜巩膜片。前板状移植物预先切成微角膜刀。在宿主角膜上进行深飞秒(FS)激光切割,然后进行准分子激光平滑处理。测试了FS激光切割和准分子激光平滑的不同参数。光学相干断层扫描用于测量角膜测厚法并评估移植物与宿主的并置。基于扫描电子显微镜图像,使用5点刻度以掩蔽的方式对界面质量进行了量化。结果:在226至380 m的深FS激光切割下,在主机床上形成了可见的凸脊。用中心消融深度为29 m的准分子激光进行平滑处理,并用生理盐水作为平滑剂不能充分减少凸纹(得分= 4.0)。深度为58 m的受激准分子激光烧蚀和Optisol-GS作为平滑剂将山脊平滑到可接受的水平(得分= 2.1)。相同尺寸的移植物和宿主切口直径,相对于中央移植物厚度约50-m的宿主侧切深度提供了最佳的移植物-宿主配合。结论:需要使用粘性平滑剂进行深度受激准分子激光消融以在术后去除脊FS深层状切割。宿主侧切口应足够深,以容纳比中心更大的移植物周边厚度。这种LALAK设计提供了平滑的层状界面,中等厚度的移植物以及良好的移植物-宿主配合。

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