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Mumford-Shah algorithm applied to videokeratography image processing and consequences to refractive power values.

机译:Mumford-Shah算法应用于视频角膜图像处理以及对屈光力值的影响。

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摘要

There are many corneal diseases that can be detected using an eye-care device called videokeratograph. The videokeratograph is based on the principle of an apparatus called Placido disc and is used to precisely measure the anterior surface of the cornea. This disc contains rings alternately white and black, which are reflected on the patient's cornea during the examination. The device can find anomalies by analyzing the reflected image, using image-processing algorithms. Although the efficiency of most commercial videokeratographs is acceptable, manufacturers do not disseminate to the scientific community the technique used in the image analysis algorithms. This makes it difficult for the specialized researcher in order to find better algorithms for the image-processing and, consequently, increase the instrument's precision. In this work we have segmented the Placido disc in polar coordinates by implementing a diagonal section of the image, in the radial direction. The objective is to find the inflection points in the signal obtained. In this paper the signal is studied by using the Mumford-Shah segmentation method. The results are compared to those obtained with other classic methods in the literature, e.g. Marr-Hildreth filters, numerical derivative, Fourier derivative, morphological Laplacian and Canny derivative. The best result was achieved by using the Mumford-Shah functional. Using this technique it was possible to find the inflection positions with higher accuracy. The method did not detect any false inflection. Mumford-Shah's method demonstrated also a high precision in the task of eliminating noises from the original signal.
机译:使用称为视频角膜描记器的眼部护理设备可以检测到许多角膜疾病。该视频角膜描记器基于称为Placido盘的设备的原理,用于精确测量角膜的前表面。该盘包含白色和黑色交替的环,在检查过程中会反射到患者的角膜上。该设备可以使用图像处理算法通过分析反射图像来发现异常。尽管大多数商业视频角膜描记器的效率是可以接受的,但是制造商并未向科学界传播图像分析算法中使用的技术。这使得专业研究人员难以找到更好的图像处理算法,从而提高了仪器的精度。在这项工作中,我们通过在径向上实现图像的对角线部分,在极坐标中分割了Placido盘。目的是在获得的信号中找到拐点。本文采用Mumford-Shah分割方法研究信号。将结果与文献中其他经典方法获得的结果进行比较。 Marr-Hildreth滤波器,数值导数,傅立叶导数,形态Laplacian和Canny导数。最好的结果是通过使用Mumford-Shah函数获得的。使用这种技术,可以以更高的精度找到拐点位置。该方法未检测到任何错误的变形。 Mumford-Shah的方法在消除原始信号中的噪声方面也显示出很高的精度。

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