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Evaluation of a microkeratome-based limbal harvester device for limbal stem cell transplantation.

机译:基于微角膜刀的角膜缘采集器装置对角膜缘干细胞移植的评估。

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PURPOSE: To assess the cut quality and reproducibility using a novel microkeratome-based limbal harvester. METHODS: An enlarged microkeratome head and stainless steel blades were coupled with a nitrogen gas-driven turbine (15,000 blade oscillations/min) of a microkeratome. A large, 16-mm-diameter suction ring was attached to the globe. A lamellar sclerokeratectomy using head depths of 170 and 200 microm was performed in human donor research eyes. Obtained lenticule thickness was measured by ultrasound pachymetry and the bed size by planimetry. Histologic and scanning electron microscopy (SEM) analyses of the samples were performed. RESULTS: Central lenticule thickness was 294 microm (standard deviation [SD] 37) for the 170 head and 277 microm (SD 91) for the 200 head (p = 0.720). Lenticule diameter was larger in the horizontal meridian using the 170 head (12.8 mm [SD 0.8] vs. 11.9 mm [SD 0.7], p = 0.028), but similar in vertical meridian (12.0 [SD 0.6] versus 11.4 mm [SD 0.6], p = 0.093). Histology showed a multilayer epithelial cell pattern at the lenticule periphery. The SEM showed a smooth cut surface in both the stromal bed and the lenticule. CONCLUSION: Cut reproducibility and quality are similar to those found using standard microkeratomes for corneal lamellar cuts. This system ensures, in a straightforward way, the presence of epithelial cells in the edges of a mechanical sclerokeratectomy for limbal stem cell transplantation.
机译:目的:使用新型基于微角膜刀的角膜缘采集器评估切割质量和可重复性。方法:将扩大的微型角膜刀头和不锈钢叶片与微型角膜刀的氮气驱动涡轮(每分钟15,000个叶片振荡)耦合。一个大的,直径为16毫米的吸环连接到地球仪上。在人类供体研究的眼睛中进行了使用170和200微米的头部深度的板层巩膜切除术。通过超声测厚法测量获得的微透镜厚度,通过平面法测量床的大小。对样品进行组织学和扫描电子显微镜(SEM)分析。结果:170头的中央晶状体厚度为294微米(标准差[SD] 37),而200头的中央巩膜厚度为277微米(SD 91)(p = 0.720)。使用170头的水平子午线中的小透镜直径较大(12.8 mm [SD 0.8]对比11.9 mm [SD 0.7],p = 0.028),但垂直子午线相似(12.0 [SD 0.6]对比11.4 mm [SD 0.6] ],p = 0.093)。组织学显示在小孔周边的多层上皮细胞模式。 SEM在基质床和小透镜中均显示出光滑的切割表面。结论:切口的可重复性和质量与使用标准微型角膜刀切割角膜层状切口的结果相似。该系统以直接的方式确保了在用于角膜缘干细胞移植的机械性巩膜切除术的边缘存在上皮细胞。

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