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Qualitative and quantitative characterization of the in vitro dehydration process of hydrogel contact lenses

机译:水凝胶隐形眼镜体外脱水过程的定性和定量表征

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摘要

PURPOSE: To investigate the in vitro dehydration process of conventional hydrogel and silicone-hydrogel contact lens materials. METHODS: Eight conventional hydrogel and five silicone-hydrogel contact lenses were dehydrated under controlled environmental conditions on an analytical balance. Data were taken at 1-min intervals and dehydration curves of cumulative dehydration (CD), valid dehydration (VD), and dehydration rate (DR) were obtained. Several quantitative descriptors of the dehydration process were obtained by further processing of the information. RESULTS: Duration of phase I (r(2) = 0.921), CD at end of phase I (r(2) = 0.971), time to achieve a DR of -1%/min (r(2) = 0.946) were strongly correlated with equilibrium water content (EWC) of the materials. For each individual sample, the VD at different time intervals can be accurately determined using a 2nd order regression equation (r(2) > 0.99 for all samples). The first 5 min of the dehydration process show a relatively uniform average CD of about -1.5%/min. After that, there was a trend towards higher average CD for the following 15 min as the EWC of the material increases (r(2) = 0.701). As a consequence, average VD for the first 5 min displayed a negative correlation with EWC (r(2) = 0.835), and a trend towards uniformization among CL materials for the following periods (r(2) = 0.014). Overall, silicone-hydrogel materials display a lower dehydration, but this seems to be primarily due to their lower EWC. CONCLUSIONS: DR curves under the conditions of the present study can be described as a three-phase process. Phase I consists of a relatively uniform DR with a duration that ranges from 10 to almost 60 min and is strongly correlated with the EWC of the polymer as it is the CD during this phase. Overall, HEMA-based hydrogels dehydrate to a greater extent and faster than silicone-hydrogel materials. There are differences in water retention between lenses of similar water content and thickness that should be further investigated.
机译:目的:研究常规水凝胶和有机硅-水凝胶隐形眼镜材料的体外脱水过程。方法:在可控的环境条件下以分析天平将八只常规水凝胶和五只有机硅-水凝胶隐形眼镜脱水。以1分钟为间隔获取数据,并获得累积脱水(CD),有效脱水(VD)和脱水速率(DR)的脱水曲线。通过进一步处理信息,可以获得脱水过程的几个定量描述子。结果:第一阶段的持续时间(r(2)= 0.921),第一阶段结束时的CD(r(2)= 0.971),达到-1%/ min的DR所需的时间(r(2)= 0.946)为与材料的平衡水含量(EWC)密切相关。对于每个单独的样本,可以使用二阶回归方程(所有样本的r(2)> 0.99)准确确定不同时间间隔的VD。脱水过程的前5分钟显示相对均匀的平均CD约为-1.5%/ min。此后,随着材料的EWC的增加,在接下来的15分钟内,平均CD趋向于更高(r(2)= 0.701)。结果,前5分钟的平均VD与EWC呈负相关(r(2)= 0.835),并且在随后的时间段内CL材料之间趋向于均匀化(r(2)= 0.014)。总体而言,有机硅-水凝胶材料的脱水程度较低,但这似乎主要是由于其EWC较低。结论:在本研究条件下的DR曲线可以描述为一个三相过程。阶段I由相对均匀的DR组成,持续时间在10到几乎60分钟之间,并且与聚合物的EWC密切相关,因为在此阶段它是CD。总体而言,基于HEMA的水凝胶比硅酮水凝胶材料可更大程度地脱水。具有相似水含量和厚度的镜片之间在保水性方面存在差异,应进一步研究。

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