Centroid detection in ophthalmic applications

D. R. Iskander, M. Collins, B. Davis
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Abstract

Monochromatic aberrations of the human eye can be objectively measured with an aberroscope or a Hartmann-Shack sensor, which can calculate the wavefront aberrations using displacements in a grid image. These displacements are determined from the centroid locations of the grid points. Often, in optometry practice, the acquired images are of low resolution and low intensity. Current methods for detecting centroids in such images are essentially based on a Canny-Deriche oriented edge-detecting filter. However, its performance has been found to be insufficient in some clinical applications. We propose an alternative method for detecting centroids in grid images based on watershed transformation. The proposed methodology accurately detects the number of grid points for the subsequent estimation of the centroid locations.
质心检测在眼科中的应用
人眼的单色像差可以用像差镜或哈特曼-夏克传感器客观测量,它可以利用网格图像中的位移计算波前像差。这些位移由网格点的质心位置确定。通常,在验光实践中,获得的图像是低分辨率和低强度的。目前用于检测此类图像中质心的方法基本上是基于Canny-Deriche定向边缘检测滤波器。然而,在一些临床应用中,其性能仍显不足。提出了一种基于分水岭变换的网格图像质心检测方法。该方法能够准确地检测网格点的数量,为后续的质心位置估计提供依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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