College of Optometry, University of Houston, Houston, TX 77204, USA.
Invest Ophthalmol Vis Sci. 2012 Aug 20;53(9):5426-32. doi: 10.1167/iovs.12-10033.
The purpose of our study was to test the prediction that if the tear film thins due to evaporation, rather than tangential flow, a high concentration of fluorescein in the tear film would show a greater reduction in fluorescent intensity compared to a low concentration of fluorescein due to self-quenching at high concentrations.
Tear film thickness, thinning rate, and fluorescent intensity were measured continuously and simultaneously with a modified spectral interferometer in 30 healthy subjects with two different concentrations (2% followed by 10%) of 1 μL of liquid fluorescein on the eye. Measurements of fluorescein self-quenching (fluorescent efficiency as a function of fluorescein concentration) are described in an Appendix and are reported in arbitrary units.
Under low and high fluorescein concentration conditions, there were no differences in tear film thickness (P = 0.09) or thinning rates (P = 0.76). While the mean initial fluorescent intensity was similar between groups (637.47 ± 381.47 vs. 672.09 ± 649.72, P = 0.55), the mean rate of fluorescent decay was 4-fold faster in the high (16.57 ± 29.34) than in the low (4.11 ± 6.78) concentration group (P < 0.01).
The large difference in the rate of fluorescent decay between groups can be explained by the effects of evaporation and self quenching of fluorescein; the latter is expected to be greater for high than for low fluorescein concentration. Fluorescence decay due to tangential flow would be expected to be similar at high and low fluorescein concentrations. This supports previous evidence that evaporation has the primary role in normal tear thinning between blinks.
我们研究的目的是验证一个假设,即如果泪膜由于蒸发而变薄,而不是由于切向流,那么高浓度的荧光素在泪膜中会由于自猝灭而比低浓度的荧光素更快地降低荧光强度。
我们使用改良的光谱干涉仪,在 30 名健康受试者的眼睛上滴入两滴不同浓度(2%和 10%)的 1μL 荧光素溶液,连续实时同步测量泪膜厚度、变薄率和荧光强度。荧光素自猝灭(荧光效率随荧光素浓度的变化)的测量方法见附录,并以任意单位报告。
在低浓度和高浓度荧光素条件下,泪膜厚度(P = 0.09)和变薄率(P = 0.76)没有差异。虽然两组的初始荧光强度均值相似(637.47 ± 381.47 vs. 672.09 ± 649.72,P = 0.55),但高浓度(16.57 ± 29.34)组的荧光衰减速度比低浓度(4.11 ± 6.78)组快 4 倍(P < 0.01)。
两组间荧光衰减速度的巨大差异可以用荧光素的蒸发和自猝灭效应来解释;高浓度的荧光素比低浓度的荧光素更容易猝灭。由于切向流引起的荧光衰减在高浓度和低浓度的荧光素下应该是相似的。这支持了先前的证据,即蒸发在正常眨眼间泪膜变薄中起主要作用。