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A New Clinical Instrument for The Early Detection of Cataract Using Dynamic Light Scattering and Corneal Topography

机译:动态光散射和角膜地形图早期检测白内障的新临床仪器

摘要

A growing cataract can be detected at the molecular level using the technique of dynamic light scattering (DLS). However, the success of this method in clinical use depends upon the precise control of the scattering volume inside a patient's eye and especially during patient's repeat visits. This is important because the scattering volume (cross-over region between the scattered fight and incident light) inside the eye in a high-quality DLS set-up is very small (few microns in dimension). This precise control holds the key for success in the longitudinal studies of cataract and during anti-cataract drug screening. We have circumvented these problems by fabricating a new DLS fiber optic probe with a working distance of 40 mm and by mounting it inside a cone of a corneal analyzer. This analyzer is frequently used in mapping the corneal topography during PRK (photorefractive keratectomy) and LASIK (laser in situ keratomileusis) procedures in shaping of the cornea to correct myopia. This new instrument and some preliminary clinical tests on one of us (RRA) showing the data reproducibility are described.
机译:使用动态光散射(DLS)技术可以在分子水平检测到正在生长的白内障。但是,该方法在临床上的成功取决于对患者眼内,尤其是在患者重复访视时,其散射量的精确控制。这很重要,因为在高质量DLS设置中,眼睛内部的散射体积(散射的战斗力和入射光之间的交叉区域)非常小(尺寸为几微米)。这种精确的控制是成功开展白内障纵向研究和抗白内障药物筛选的关键。我们通过制造工作距离为40 mm的新型DLS光纤探头并将其安装在角膜分析仪的圆锥体内来解决了这些问题。该分析仪通常用于在PRK(光折射角膜切除术)和LASIK(激光原位角膜磨镶术)手术过程中绘制角膜地形图,以矫正近视。描述了这种新仪器以及对我们其中一位(RRA)进行的初步临床测试,显示了数据的可重复性。

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