首页> 外文期刊>Journal of cataract and refractive surgery >Corneal topography with Scheimpflug imaging and videokeratography: comparative study of normal eyes.
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Corneal topography with Scheimpflug imaging and videokeratography: comparative study of normal eyes.

机译:Scheimpflug成像和视频角膜成像的角膜地形图:正常眼睛的比较研究。

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PURPOSE: To compare the repeatability within anterior corneal topography measurements and agreement between measurements with the Pentacam HR rotating Scheimpflug camera and with a previously validated Placido disk-based videokeratoscope (Medmont E300). SETTING: Contact Lens and Visual Optics Laboratory, School of Optometry, Queensland University of Technology, Brisbane, Queensland, Australia. METHODS: Normal eyes in 101 young adult subjects had corneal topography measured using the Scheimpflug camera (6 repeated measurements) and videokeratoscope (4 repeated measurements). The best-fitting axial power corneal spherocylinder was calculated and converted into power vectors. Corneal higher-order aberrations (HOAs) (up to the 8th Zernike order) were calculated using the corneal elevation data from each instrument. RESULTS: Both instruments showed excellent repeatability for axial power spherocylinder measurements (repeatability coefficients <0.25 diopter; intraclass correlation coefficients >0.9) and good agreement for all power vectors. Agreement between the 2 instruments was closest when the mean of multiple measurements was used in analysis. For corneal HOAs, both instruments showed reasonable repeatability for most aberration terms and good correlation and agreement for many aberrations (eg, spherical aberration, coma, higher-order root mean square). For other aberrations (eg, trefoil and tetrafoil), the 2 instruments showed relatively poor agreement. CONCLUSIONS: For normal corneas, the Scheimpflug system showed excellent repeatability and reasonable agreement with a previously validated videokeratoscope for the anterior corneal axial curvature best-fitting spherocylinder and several corneal HOAs. However, for certain aberrations with higher azimuthal frequencies, the Scheimpflug system had poor agreement with the videokeratoscope; thus, caution should be used when interpreting these corneal aberrations with the Scheimpflug system.
机译:目的:比较前角膜地形图测量中的可重复性,以及使用Pentacam HR旋转Scheimpflug相机和先前已验证的基于Placido磁盘的视频角膜镜(Medmont E300)进行测量之间的一致性。地点:澳大利亚昆士兰州布里斯班的昆士兰科技大学眼科视光学学院隐形眼镜和视觉光学实验室。方法:使用Scheimpflug相机(重复测量6次)和视频角膜镜(重复测量4次)对101名年轻成年人的正常眼睛进行角膜地形图测量。计算出最适合的轴向角膜球囊圆柱度,并将其转换为功率向量。使用每种仪器的角膜高程数据计算角膜高阶像差(HOA)(直到第8个Zernike阶)。结果:两种仪器在轴向功率球镜测量中均显示出极好的可重复性(重复性系数<0.25屈光度;类内相关系数> 0.9),并且对所有功率矢量都具有良好的一致性。当在分析中使用多次测量的平均值时,这两种仪器之间的一致性最接近。对于角膜HOA,两种仪器对于大多数像差术语均显示出合理的可重复性,并且对于许多像差(例如,球差,彗差,高阶均方根)具有良好的相关性和一致性。对于其他像差(例如三叶形和四翼形),这两种仪器显示出相对较差的一致性。结论:对于正常的角膜,Scheimpflug系统具有出色的可重复性,并且与先前验证过的可伸缩角膜前眼球镜和多个角膜HOA的视频角膜镜相吻合。但是,对于某些具有较高方位角频率的像差,Scheimpflug系统与视频角膜镜的一致性差;因此,在用Scheimpflug系统解释这些角膜像差时应格外小心。

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