Marx Sebastian, Sickenberger Wolfgang
JENVIS Research c/o Ernst-Abbe University of Applied Sciences Jena, Jena, Germany.
JENVIS Research c/o Ernst-Abbe University of Applied Sciences Jena, Jena, Germany; Optometry and Vision Science, Ernst-Abbe University of Applied Sciences Jena, Jena, Germany.
Cont Lens Anterior Eye. 2017 Dec;40(6):382-388. doi: 10.1016/j.clae.2017.05.001. Epub 2017 Aug 25.
This study was designed to develop a novel technique called non-invasive keratograph dry-up time (NIK-DUT), which used an adapted corneal topographer, to analyse in-vitro contact lens surface dewetting and the effects of combinations of lenses and lens care solutions on dewetting.
Variables were assessed to optimise sensitivity and reproducibility. To validate the method, in-vitro dewetting of silicone hydrogel contact lenses (balafilcon A, comfilcon A, lotrafilcon A, lotrafilcon B and senofilcon A) was tested. All lens types were soaked in OPTI-FREE PureMoist Multipurpose Disinfecting Solution (OFPM) and Sensitive Eyes Saline Solution. The mean NIK-DUT, defined as drying of 25% of the placido ring measurement segments (NIK-DUT_S25), was calculated for each lens/lens solution combination and a visual map constructed representing the time and location of the dry-up event.
Optimal conditions for NIK-DUT measurement included mounting onto a glass stage with a surface geometry of r=8.5mm, e=0, and measuring with high intensity red or white illumination. This method detected significant differences in contact lens dewetting with different lens soaking solutions. NIK-DUT_S25 for all lenses was longer when pre-soaked in OFPM versus saline. Visual analysis showed that dewetting of contact lenses was not uniform across surfaces and differed between test solutions.
NIK-DUT is suitable for detecting differences in dewetting among various contact lenses and lens-care combinations. NIK-DUT can quantify the dewetting of large areas of lens surfaces with little subjective influence. Lens care solutions containing surface-active wetting agents were found to delay surface dewetting of silicone hydrogel lenses.
本研究旨在开发一种名为无创角膜地形图干燥时间(NIK-DUT)的新技术,该技术使用经过改装的角膜地形图仪,以分析体外隐形眼镜表面的去湿情况以及镜片与护理液组合对去湿的影响。
评估变量以优化灵敏度和可重复性。为验证该方法,对硅水凝胶隐形眼镜(balafilcon A、comfilcon A、lotrafilcon A、lotrafilcon B和senofilcon A)进行了体外去湿测试。所有镜片类型均浸泡在OPTI-FREE PureMoist多功能消毒护理液(OFPM)和敏感眼生理盐水溶液中。计算每种镜片/护理液组合的平均NIK-DUT(定义为25%的普拉西多环测量段干燥时的时间,即NIK-DUT_S25),并构建直观地图以表示干燥事件的时间和位置。
NIK-DUT测量的最佳条件包括安装在表面曲率半径r = 8.5mm、偏心率e = 0的玻璃载物台上,并使用高强度红色或白色照明进行测量。该方法检测到不同镜片浸泡护理液在隐形眼镜去湿方面存在显著差异。与生理盐水相比,所有镜片在OFPM中预浸泡后,NIK-DUT_S25更长。直观分析表明,隐形眼镜表面的去湿情况并不均匀,且在不同测试护理液之间存在差异。
NIK-DUT适用于检测不同隐形眼镜及护理液组合之间的去湿差异。NIK-DUT能够在几乎没有主观影响的情况下量化大面积镜片表面的去湿情况。发现含有表面活性湿润剂的护理液可延迟硅水凝胶镜片的表面去湿。