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A measure of tortuosity based on chain coding

机译:基于链编码的曲折度度量

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摘要

A measure of tortuosity for 2D curves is presented. Tortuosity is a very important property of curves and has many applications, such as: how to measure the tortuosity of retinal blood vessels, intracerebral vasculature, aluminum foams, etc. The measure of tortuosity proposed here is based on a chain code called Slope Chain Code (SCC). The SCC uses some ideas which were described in [A geometric structure for 2D shapes and 3D surfaces, Pattern Recognition 25 (1992) 483-496]. The SCC of a curve is obtained by placing straight-line segments of constant length around the curve (the endpoints of the straight-line segments always touching the curve), and calculating the slope changes between contiguous straight-line segments scaled to a continuous range from -1 to 1. The SCC of a curve is independent of translation, rotation, and optionally, of scaling, which is an important advantage for computing tortuosity. Also, the minimum and maximum values of tortuosity for curves and a measure of normalized tortuosity are described. Finally, an application of the proposed measure of tortuosity is presented which corresponds to the computation of retinal blood vessel tortuosity.
机译:提出了二维曲线的曲折度的度量。曲折度是曲线的一个非常重要的属性,具有许多应用,例如:如何测量视网膜血管,脑血管,泡沫铝等的曲折度。此处提出的曲折度测量是基于称为“斜链码”的链码的(SCC)。 SCC使用了一些想法,这些想法在[用于2D形状和3D表面的几何结构,模式识别25(1992)483-496]中进行了描述。曲线的SCC通过以下方式获得:将恒定长度的直线段围绕曲线放置(直线段的端点始终接触曲线),并计算缩放到连续范围的连续直线段之间的斜率变化从-1到1。曲线的SCC与平移,旋转以及缩放(可选)无关,这是计算曲折度的重要优点。另外,还描述了曲线的曲折度的最小值和最大值以及标准化曲折度的度量。最后,提出了一种拟议的弯曲度测量方法的应用,该方法对应于视网膜血管弯曲度的计算。

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