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New method for measuring thickness in thin transparent medium

机译:测量薄透明介质中厚度的新方法

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The aim of this method is to determine the thickness of a transparent medium, close to the corneal thickness, using the angle at the first and second Purkinje images are aligned for a specific optical slit width. An optical slit is projected in an oblique angle relatively to the transparent medium, producing two different reflections in each medium surface (first and second Purkinje images). The slit is then moved until the first and second Purkinje images of the slit are aligned in such a way, that look as if they were a continuous slit. The slit width, the angle between the illumination and observation, and the medium index are used, then, to calculate the medium thickness. This method was implemented in a slit lamp and the central thicknesses (CT) of nine gas-permeable contact lenses (CL) were measured, with this method and a mechanical gauge and the results were compared. The mean CT difference ± standard deviation, between the two methods was 0.004 ± 0.008 mm with minimum and maximum absolute values of 0.002 and 0.019 mm. This technique showed good precision to measure the CT of CL and should be tried in human corneas.
机译:该方法的目的是使用第一浦肯野图像和第二浦肯野图像对准特定光学缝隙宽度的角度,确定接近角膜厚度的透明介质的厚度。光学狭缝相对于透明介质以倾斜角度投射,在每个介质表面产生两个不同的反射(第一和第二浦肯野图像)。然后移动狭缝,直到狭缝的第一和第二浦肯野图像以这种方式对齐,看起来好像它们是连续的狭缝。然后,使用狭缝宽度,照明和观察之间的角度以及介质指数来计算介质厚度。该方法在裂隙灯中实施,并测量了九个透气性隐形眼镜(CL)的中心厚度(CT),并使用该方法和机械量规对结果进行了比较。两种方法之间的平均CT差±标准差为0.004±0.008 mm,最小和最大绝对值分别为0.002和0.019 mm。该技术显示出良好的测量CL CT的精确度,应在人角膜中尝试。

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