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Measuring the Refractive Index of Bovine Corneal Stromal Cells Using Quantitative Phase Imaging

机译:使用定量相位成像法测量牛角膜基质细胞的折射率

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摘要

The cornea is the primary refractive lens in the eye and transmits >90% of incident visible light. It has been suggested that the development of postoperative corneal haze could be due to an increase in light scattering from activated corneal stromal cells. Quiescent keratocytes are thought to produce crystallins that match the refractive index of their cytoplasm to the surrounding extracellular material, reducing the amount of light scattering. To test this, we measured the refractive index (RI) of bovine corneal stromal cells, using quantitative phase imaging of live cells in vitro, together with confocal microscopy. The RI of quiescent keratocytes (RI = 1.381 ± 0.004) matched the surrounding matrix, thus supporting the hypothesis that keratocyte cytoplasm does not scatter light in the normal cornea. We also observed that the RI drops after keratocyte activation (RI = 1.365 ± 0.003), leading to a mismatch with the surrounding intercellular matrix. Theoretical scattering models showed that this mismatch would reduce light transmission in the cornea. We conclude that corneal transparency depends on the matching of refractive indices between quiescent keratocytes and the surrounding tissue, and that after surgery or wounding, the resulting RI mismatch between the activated cells and their surrounds significantly contributes to light scattering.
机译:角膜是眼睛中的主要折射晶状体,可透射> 90%的入射可见光。已经提出术后角膜混浊的发展可能是由于活化角膜基质细胞的光散射增加所致。人们认为静止的角膜细胞产生与细胞质的折射率相匹配的结晶蛋白,使其与周围的细胞外物质相匹配,从而减少了光散射的数量。为了测试这一点,我们使用活细胞体外定量相成像以及共聚焦显微镜,测量了牛角膜基质细胞的折射率(RI)。静态角膜细胞的RI(RI = 1.381±0.004)与周围的基质匹配,因此支持了角膜细胞的细胞质不会在正常角膜中散射光的假设。我们还观察到角膜细胞活化后RI下降(RI = 1.365±0.003),导致与周围细胞间基质不匹配。理论散射模型表明,这种失配将减少角膜中的光透射。我们得出的结论是,角膜透明性取决于静态角膜细胞与周围组织之间的折射率匹配,并且在手术或受伤后,活化细胞及其周围区域之间产生的RI不匹配显着地促进了光散射。

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