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飞秒激光远视型基质透镜植入诱导的角膜增厚和中央扁平化

Corneal thickening and central flattening induced by femtosecond laser hyperopic-shaped intrastromal lenticule implantation.

作者信息

Mastropasqua Leonardo, Nubile Mario

机构信息

National Centre of High Technology (CNAT) in Ophthalmology, University of "G d'Annunzio", Chieti-Pescara, Italy.

出版信息

Int Ophthalmol. 2017 Aug;37(4):893-904. doi: 10.1007/s10792-016-0349-6. Epub 2016 Sep 15.

Abstract

PURPOSE

To investigate the feasibility of the procedure and the modifications of the corneal curvature and profile obtained with a novel technique of stromal-lentoid implantation in ex vivo human corneas.

DESIGN

Experimental ex vivo study in human corneas.

MATERIALS AND METHODS

Twelve stromal lentoids were produced by means of hyperopic femtosecond lenticule extraction (FLEx) with the VisuMax femtosecond laser (Carl Zeiss Meditec, Jena, Germany) with a refractive power of +8.00 D and optical zone of 6.0 (six lenticules) and 5.0 mm (six lenticules), respectively. The posterior surface of these stromal lentoids presented a higher curvature with respect to the anterior surface and, therefore, the thinnest point is located at the center of the lenticule, gradually thickening towards the periphery. Another 12 corneas underwent femtosecond laser intrastromal pocket creation at a depth of 115 microns, for lenticule insertion. After intrastromal lenticule implantation the changes of corneal profiles were evaluated by means of corneal topography and anterior segment optical coherence tomography (OCT).

RESULTS

The implantations of intrastromal lenticules were successful in all cases with proper distention and centration. A mid-peripheral forward shift of the anterior corneal surface along with a thickening (greater in periphery) was induced. There was a significant flattening of anterior corneal central areas of 7.31 ± 1.52 D (p = 0.002). Diameters of the flattening area were found to be consistently correlated with the optical zone diameter of the implanted lenticules (p = 0.006). Central flattening was similar in both groups. OCT pachymetry maps showed an increase of corneal thickness consistently correlated with implanted lentoid thickness and diameter.

CONCLUSION

The implantation of modified hyperopic-shaped intra-corneal stromal lentoid is a feasible and reproducible technique for achieving central corneal flattening while increasing thickness. Whether this procedure may be beneficial in the treatment of refractive errors or ectatic corneal disorders such as keratoconus merits further study.

摘要

目的

探讨在离体人角膜中采用一种新型基质透镜植入技术的手术可行性以及所获得的角膜曲率和形态的改变。

设计

在人角膜上进行的实验性离体研究。

材料与方法

使用VisuMax飞秒激光(德国耶拿卡尔蔡司医疗技术公司)通过远视飞秒透镜切除术(FLEx)制作12个基质透镜,其屈光力为+8.00 D,光学区分别为6.0(6个透镜)和5.0毫米(6个透镜)。这些基质透镜的后表面相对于前表面具有更高的曲率,因此,最薄点位于透镜中心,向周边逐渐增厚。另外12只角膜在115微米深度进行飞秒激光基质内袋制作,用于插入透镜。基质内透镜植入后,通过角膜地形图和眼前节光学相干断层扫描(OCT)评估角膜形态的变化。

结果

所有病例的基质内透镜植入均成功,扩张和对中良好。诱导了角膜前表面的中周边向前移位以及增厚(周边更明显)。角膜前中央区域显著变平7.31±1.52 D(p = 0.002)。发现变平区域的直径与植入透镜的光学区直径始终相关(p = 0.006)。两组的中央变平情况相似。OCT测厚图显示角膜厚度增加,与植入透镜的厚度和直径始终相关。

结论

植入改良的远视形角膜基质内透镜是一种可行且可重复的技术,可实现角膜中央变平同时增加厚度。该手术在治疗屈光不正或圆锥角膜等角膜扩张性疾病中是否有益,值得进一步研究。

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