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间质切削联合注液矫正远视

Correction of hyperopia by intrastromal cutting and liquid filler injection.

机构信息

University of Luebeck, Institute of Biomedical Optics, Peter-Monnik Weg 4, Luebeck, Germany.

Wellman Center for Photomedicine and Harvard Medical School, Massachusetts General Hospital, Researc, United States.

出版信息

J Biomed Opt. 2019 May;24(5):1-7. doi: 10.1117/1.JBO.24.5.058001.

Abstract

Correction of hyperopia requires an increase of the refractive power by steepening of the corneal surface. Present refractive surgical techniques based on corneal ablation (LASIK) or intrastromal lenticule extraction (SMILE) are problematic due to epithelial regrowth. Recently, it was shown that correction of low hyperopia can be achieved by implanting intracorneal inlays or allogeneic lenticules. We demonstrate a steepening of the anterior corneal surface after injection of a transparent, liquid filler material into a laser-dissected intrastromal pocket. We performed the study on ex-vivo porcine eyes. The increase of the refractive power was evaluated by optical coherence tomography (OCT). For a circular pocket, injection of 1 μl filler material increased the refractive power by +4.5 diopters. An astigmatism correction is possible when ellipsoidal intrastromal pockets are created. Injection of 2 μl filler material into an ellipsoidal pocket increased the refractive power by +10.9  dpt on the short and +5.1  dpt on the long axis. OCT will enable to monitor the refractive change during filler injection and is thus a promising technique for real-time dosimetry.

摘要

矫正远视需要通过增加角膜表面的陡峭度来增加屈光力。目前基于角膜消融(LASIK)或基质内透镜提取(SMILE)的屈光手术技术由于上皮细胞再生而存在问题。最近,已经证明通过植入角膜内植入物或同种异体透镜可以矫正低度远视。我们通过向激光解剖的基质袋中注射透明的液体填充剂来展示前角膜表面的陡峭度增加。我们在离体猪眼上进行了这项研究。通过光学相干断层扫描(OCT)评估屈光力的增加。对于圆形口袋,注射 1μl 填充剂可使屈光力增加+4.5 屈光度。当创建椭圆形基质袋时,可以进行散光矫正。在短轴上增加+10.9 屈光度,在长轴上增加+5.1 屈光度,将 2μl 填充剂注入椭圆形口袋中。OCT 将能够在填充剂注射过程中监测屈光变化,因此是实时剂量测定的有前途的技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f15/6992961/5d7cc6de1491/JBO-024-058001-g001.jpg

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