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首页> 外文期刊>Journal of cataract and refractive surgery >Mini-haptics to improve capsular fixation of plate-haptic silicone intraocular lenses.
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Mini-haptics to improve capsular fixation of plate-haptic silicone intraocular lenses.

机译:微型触觉可改善板状触觉硅树脂人工晶状体的囊膜固定。

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PURPOSE: To evaluate the effects of a new mini-haptic design on the strength and stability of capsular bag fixation of plate-haptic silicone intraocular lenses (IOLs) and determine whether this design encourages the growth of regenerating lens material or fibrous tissue around the haptic biomaterial and thus improves lens fixation in the capsular bag. SETTING: Center for Research on Ocular Therapeutics and Biodevices, Storm Eye Institute, Medical University of South Carolina, Department of Ophthalmology, Charleston, South Carolina, USA. METHODS: Six rabbits had bilateral continuous curvilinear capsulorhexis, phacoemulsification, and plate-haptic silicone IOL implantation. Each rabbit had a small-hole plate IOL (Chiron C10UB) implanted in the right eye and a mini-haptic plate IOL (Chiron C40UB) in the left eye. All rabbits were killed at 2 months. The force required to extract one haptic from the capsular bag was measured with a digital force gauge. Histopathologic analysis was performed on all specimens. RESULTS: The mini-haptic style IOLs required significantly more extraction force than the small-hole design (P = .011). Histopathologically, proliferating lens epithelial cells were observed growing circumferentially around the mini-haptics, causing a 360 degree synechia formation. This formation did not occur with the conventional small-hole plate IOLs used as the control. CONCLUSIONS: Lens epithelial cell proliferation around the mini-haptics significantly improved capsular bag fixation of the plate-haptic silicone IOL. This should decrease the incidence of clinical decentration and dislocation.
机译:目的:评估新型微型触觉设计对板状触觉硅树脂人工晶状体(IOL)囊袋固定的强度和稳定性的影响,并确定该设计是否鼓励再生的晶状体材料或触觉周围纤维组织的生长生物材料,从而改善晶状体在囊袋中的固定。地点:美国南卡罗来纳州查尔斯顿,南卡罗来纳州医科大学,风暴眼研究所,眼科治疗和生物设备研究中心。方法:六只兔经双侧连续性撕囊,超声乳化和板状触觉硅树脂人工晶体植入。每只兔子的右眼植入一个小孔板IOL(Chiron C10UB),左眼植入一个微型触板IOL(Chiron C40UB)。在2个月时杀死所有兔子。用数字测力计测量从囊袋中取出一个触觉所需的力。对所有标本进行组织病理学分析。结果:与小孔设计相比,微型触觉式IOL需要更大的拔出力(P = .011)。在组织病理学上,观察到增殖的晶状体上皮细胞在微型触觉周围周向生长,引起360度粘连形成。使用常规的小孔板IOL作为对照不会发生这种情况。结论:微型触觉周围的晶状体上皮细胞增殖显着改善了板状触觉硅树脂IOL的囊袋固定。这应该减少临床偏心和脱位的发生率。

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