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体内共聚焦显微镜下角膜基底下层标准图像与宽视野复合图像的比较

Comparison of Standard Versus Wide-Field Composite Images of the Corneal Subbasal Layer by In Vivo Confocal Microscopy.

作者信息

Kheirkhah Ahmad, Muller Rodrigo, Mikolajczak Janine, Ren Ai, Kadas Ella Maria, Zimmermann Hanna, Pruess Harald, Paul Friedemann, Brandt Alexander U, Hamrah Pedram

机构信息

Ocular Surface Imaging Center, Cornea and Refractive Surgery Service, Massachusetts Eye and Ear Infirmary, Department of Ophthalmology, Harvard Medical School, Boston, Massachusetts, United States.

Ocular Surface Imaging Center, Cornea and Refractive Surgery Service, Massachusetts Eye and Ear Infirmary, Department of Ophthalmology, Harvard Medical School, Boston, Massachusetts, United States 2Boston Image Reading Center, Cornea Service, New England.

出版信息

Invest Ophthalmol Vis Sci. 2015 Sep;56(10):5801-7. doi: 10.1167/iovs.15-17434.

Abstract

PURPOSE

To evaluate whether the densities of corneal subbasal nerves and epithelial immune dendritiform cells (DCs) are comparable between a set of three representative standard images of in vivo confocal microscopy (IVCM) and the wide-field mapped composite IVCM images.

METHODS

This prospective, cross-sectional, and masked study included 110 eyes of 58 patients seen in a neurology clinic who underwent laser-scanning IVCM (Heidelberg Retina Tomograph 3) of the central cornea. Densities of subbasal corneal nerves and DCs were compared between the average of three representative standard images and the wide-field mapped composite images, which were reconstructed by automated mapping.

RESULTS

There were no statistically significant differences between the average of three representative standard images (0.16 mm2 each) and the wide-field composite images (1.29 ± 0.64 mm2) in terms of mean subbasal nerve density (17.10 ± 6.10 vs. 17.17 ± 5.60 mm/mm2, respectively, P = 0.87) and mean subbasal DC density (53.2 ± 67.8 vs. 49.0 ± 54.3 cells/mm2, respectively, P = 0.43). However, there were notable differences in subbasal nerve and DC densities between these two methods in eyes with very low nerve density or very high DC density.

CONCLUSIONS

There are no significant differences in the mean subbasal nerve and DC densities between the average values of three representative standard IVCM images and wide-field mapped composite images. Therefore, these standard images can be used in clinical studies to accurately measure cellular structures in the subbasal layer.

摘要

目的

评估一组三张代表性的体内共聚焦显微镜(IVCM)标准图像与宽视野映射合成IVCM图像之间角膜基底膜下神经和上皮免疫树突状细胞(DCs)的密度是否具有可比性。

方法

这项前瞻性、横断面、盲法研究纳入了58例在神经科门诊就诊的患者的110只眼睛,这些患者接受了中央角膜的激光扫描IVCM(海德堡视网膜断层扫描仪3型)检查。比较了三张代表性标准图像的平均值与通过自动映射重建的宽视野映射合成图像之间角膜基底膜下神经和DCs的密度。

结果

在平均基底膜下神经密度方面(分别为17.10±6.10与17.17±5.60mm/mm²,P = 0.87)以及平均基底膜下DC密度方面(分别为53.2±67.8与49.0±54.3个细胞/mm²,P = 0.43),三张代表性标准图像(每张0.16mm²)的平均值与宽视野合成图像(1.29±0.64mm²)之间没有统计学上的显著差异。然而,在神经密度非常低或DC密度非常高的眼睛中,这两种方法在基底膜下神经和DC密度方面存在显著差异。

结论

三张代表性标准IVCM图像的平均值与宽视野映射合成图像之间的平均基底膜下神经和DC密度没有显著差异。因此,这些标准图像可用于临床研究,以准确测量基底膜下层的细胞结构。

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