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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Methods to obtain quantitative parametric descriptions of the optical surfaces of the human crystalline lens from Scheimpflug slit-lamp images. I. Image processing methods
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Methods to obtain quantitative parametric descriptions of the optical surfaces of the human crystalline lens from Scheimpflug slit-lamp images. I. Image processing methods

机译:从Scheimpflug裂隙灯图像获得人晶状体光学表面定量参数描述的方法。一,图像处理方法

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摘要

Of the methods developed (e.g., phakometry, magnetic resonance imaging, etc.) for noninvasive measurement of the geometry of the anterior segment of the human eye, Scheimpflug photography offers the best resolution and the highest precision. The primary obstacle encountered with this or any other image-based method has been in obtaining quantitative measurements directly from the images. Image enhancement !gray-scale gradient analysis) and pattern recognition methods (Hough transform and recursive least-squares algorithms) are developed so that parametric representations of lens surfaces and zone boundaries can be obtained directly from the images. Methods to correct for nonlinear Scheimpflug camera reproduction ratios and provide error estimates for geometrical parameters are also developed and will be presented separately. Combined, these techniques yield representations of lens geometry having sufficient precision, to which paraxial ray tracing can be applied to determine lens optical properties by using well-posed optical models with one unknown. (C) 1998 Optical Society of America. [References: 23]
机译:在开发的用于无创测量人眼前段几何形状的方法(例如,测光法,磁共振成像等)中,Scheimpflug摄影提供了最佳的分辨率和最高的精度。这种或任何其他基于图像的方法遇到的主要障碍是直接从图像获得定量测量值。开发了图像增强灰度梯度分析)和模式识别方法(霍夫变换和递归最小二乘算法),以便可以直接从图像中获取镜片表面和区域边界的参数表示。还开发了校正非线性Scheimpflug摄像机再现比并提供几何参数误差估计的方法,并将分别介绍。结合起来,这些技术产生具有足够精度的透镜几何形状的表示,可以通过使用具有一个未知数的摆放良好的光学模型将近轴光线追踪应用于透镜几何特性来确定透镜的光学特性。 (C)1998年美国眼镜学会。 [参考:23]

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