Some fluorescence properties of cataractous eye lenses.

Lens and eye toxicity research Pub Date : 1991-01-01
A Balter
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Abstract

The loss of transparency of the ocular lens is caused by the increase of light scattering as a result of structural changes and by the increased absorption of the visible light due to the accumulation of pigments. Following light absorption, these pigments undergo non-radiative and radiative (luminescence) processes which can be monitored spectroscopically. The paper presents some new results concerning the excitation spectra, decay times and polarization of the lenticular fluorescence. Fluorophore heterogeneity manifests itself in all the experimental data. A striking behaviour of the emission anisotropy as a function of temperature is found, particularly for cortical cataract lenses, indicating temperature-induced structural changes at about 20 degrees C.

白内障晶体的一些荧光特性。
晶状体透明度的丧失是由结构变化引起的光散射增加和色素积累引起的可见光吸收增加引起的。在吸收光之后,这些色素经历非辐射和辐射(发光)过程,可以用光谱监测。本文给出了透镜状荧光的激发光谱、衰减时间和偏振的一些新结果。荧光团的非均匀性体现在所有的实验数据中。发现发射各向异性作为温度函数的惊人行为,特别是皮质白内障晶体,表明温度引起的结构变化约为20℃。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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