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可扩张全尺寸人工晶状体对兔晶状体中心定位及囊膜混浊的影响。

Effect of expandable full-size intraocular lenses on lens centration and capsule opacification in rabbits.

作者信息

Assia E I, Blumenthal M, Apple D J

机构信息

Department of Ophthalmology, Meir Hospital, Sapir Medical Center, Kfar-Saba, Israel.

出版信息

J Cataract Refract Surg. 1999 Mar;25(3):347-56. doi: 10.1016/s0886-3350(99)80082-0.

Abstract

PURPOSE

To study the effects of expandable, hydrogel, full-size lenses (FSLs) on lens centration and posterior capsule opacification (PCO) in the rabbit model.

SETTING

Center for intraocular Lens Research, Storm Eye Institute, Medical University of South Carolina, Charleston, South Carolina, USA.

METHODS

Small FSLs designed for human eyes were implanted unilaterally in 20 rabbit eyes. Lens centration and PCO in these eyes were compared with those in eyes with conventional poly(methyl methacrylate) (PMMA) intraocular lenses (IOLs) or aphakia in the fellow eyes. In a second experiment, medium-size or large FSLs designed for rabbit eyes were implanted in 20 rabbit eyes and the results compared with those in eyes with conventional PMMA IOLs. Slitlamp examination of all eyes was performed regularly, after enucleation, gross inspection and microscopic studies were performed.

RESULTS

Decentration of FSLs occurred in the presence of an anterior capsule tear or very large capsulorhexis. Posterior capsule opacification developed only at sites where the implanted lens was not in contact with the capsule. Aphakic eyes and looped IOLs developed Soemmering's rings peripherally. In eyes with small FSLs, PCO developed between the lens and the center of the posterior capsule, whereas in eyes with large FSLs, only small amounts of central PCO developed. Retained high-viscosity viscoelastic material had no effect on PCO development.

CONCLUSIONS

Complete refilling of the capsular bag by a full-size IOL was associated with excellent centration and only a small degree of PCO. Elastic lenses may thus serve as a starting point for the development of an artificial lens with accommodative function.

摘要

目的

在兔模型中研究可膨胀水凝胶全尺寸人工晶状体(FSL)对人工晶状体居中及后囊膜混浊(PCO)的影响。

设置

美国南卡罗来纳州查尔斯顿市南卡罗来纳医科大学风暴眼研究所人工晶状体研究中心。

方法

将为人类眼睛设计的小型FSL单侧植入20只兔眼。将这些眼中的人工晶状体居中情况和PCO与对侧眼植入传统聚甲基丙烯酸甲酯(PMMA)人工晶状体(IOL)或无晶状体眼的情况进行比较。在第二个实验中,将为兔眼设计的中型或大型FSL植入20只兔眼,并将结果与植入传统PMMA IOL的眼进行比较。定期对所有眼睛进行裂隙灯检查,摘除眼球后进行大体检查和显微镜研究。

结果

在前囊膜撕裂或撕囊口非常大的情况下会出现FSL偏心。后囊膜混浊仅在植入的人工晶状体未与囊膜接触的部位出现。无晶状体眼和袢状IOL周边出现索默林环。在植入小型FSL的眼中,PCO在晶状体与后囊膜中心之间形成;而在植入大型FSL的眼中,仅出现少量中央PCO形成。残留高粘性粘弹材料对PCO形成无影响。

结论

全尺寸IOL完全填充囊袋与良好的居中情况相关,且仅有轻度PCO。弹性人工晶状体因此可作为开发具有调节功能人工晶状体的起点。

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