不同类型隐形眼镜的泪膜渗透压比较。

Güzin Iskeleli, Yunus Karakoç, Ozlem Aydin, Hüseyin Yetik, Haşim Uslu, Melda Kizilkaya
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引用次数: 69

摘要

目的:探讨不同类型隐形眼镜佩戴者的泪膜渗透率。方法:56例患者56只眼按配戴隐形眼镜类型分为4组,每组14只眼。第1组和第2组为佩戴每日频繁更换的软性隐形眼镜的受试者;1组晶状体含水量为55%,2组晶状体含水量为38%。第3组和第4组佩戴硬性透气性隐形眼镜,第3组Dk值为90,第4组Dk值为52。采用自动渗透仪(Orstat 6030, Daiichi Kagacu, Kyoto, Japan)测定各组佩戴隐形眼镜前后的泪膜渗透压值,以百万摩尔(mosm)为单位,并采用方差分析(ANOVA)对结果进行统计学比较。结果:佩戴隐形眼镜前,1、2、3、4组的泪膜渗透压值分别为283.61+/-12.83 mosm、285.23+/-8.94 mosm、285.57+/-11.39 mosm、280.15+/-12.07 mosm。佩戴隐形眼镜一段时间后,分别测量1组312.15+/-16.03 mosm、2组316.54+/-12.14 mosm、3组313.14+/-9.66 mosm、4组316.38+/-11.60 mosm。虽然各组佩戴隐形眼镜前后的数值差异有统计学意义(F=291.45;P=0.0005),组间差异无统计学意义。结论:当佩戴隐形眼镜时,晶状体改变泪膜的正常结构,影响泪膜的蒸发速度;因此,泪膜渗透压可能增加。在我们的研究中,所有的隐形眼镜对泪膜渗透性产生了相似的影响。
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Comparison of tear-film osmolarity in different types of contact lenses.

Purpose: To investigate the tear-film osmolarity of contact lens wearers for different types of contact lenses.

Methods: Fifty six eyes of 56 cases were evaluated in four different groups according to the type of contact lens worn, with 14 eyes in each group. Groups 1 and 2 consisted of subjects who wore frequent-replacement daily wear soft contact lenses; group 1 lenses had 55% water content, and lenses in group 2 had 38% water content. Groups 3 and 4 consisted of subjects who wore rigid gas-permeable contact lenses, with a Dk value of 90 in group 3 and a Dk value of 52 in group 4. Tear-film osmolarity values in milliosmole (mosm) units were determined by auto-osmometer (Orstat 6030, Daiichi Kagacu, Kyoto, Japan) before and after contact lens wear for each group, and the results were compared statistically by ANOVA test.

Results: Before the period of contact lens wear, the tear-film osmolarity values of group 1, 2, 3, and 4 were 283.61+/-12.83 mosm, 285.23+/-8.94 mosm, 285.57+/-11.39 mosm, and 280.15+/-12.07 mosm, respectively. After the period of contact lens wear, these values were measured at 312.15+/-16.03 mosm in group 1, 316.54+/-12.14 mosm in group 2, 313.14+/-9.66 mosm in group 3, and 316.38+/-11.60 mosm in group 4. Although the difference between the values before and after the period of contact lens wear was statistically significant for each group (F=291.45; P=0.0005), there was no statistically significant difference among the groups.

Conclusions: When a contact lens is placed in the eye, the lens alters the normal structure of the tear film and affects its rate of evaporation; therefore tear-film osmolarity may increase. In our study, all contact lenses produced a similar effect on tear-film osmolarity.

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