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Modelling of retinal vasculature based on genetically tuned parametric L-system

机译:基于遗传参数化L系统的视网膜脉管系统建模

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摘要

Structures of retinal blood vessels are of great importance in diagnosis and treatment of diseases that affect the eyes. Parametric Lindenmayer system (L-system) is one of the powerful rule-based methods that has a great capability for generating tree-like structures using simple rewriting rules. In this study, a novel framework, which can be used to model the retinal vasculature based on available images, has been proposed. This framework presents a solution to special instance of a general open problem, the L-system inverse problem, in which L-system rules should be obtained based on images representing a particular tree-like structure. In this study, genetic algorithm with a novel objective function based on feature matching and an L-system grammar comparison has been used along with nonlinear regression to solve the parametric L-system inverse problem. The resulting L-system growth rules have been employed to predict inaccessible vascular branches. Graphical and quantitative comparison between model results and target structures of different case studies reveals that the proposed framework can be used to generate the structure of retinal blood vessels accurately. Even in the cases lacking sufficient image data, it can provide acceptable predictions.
机译:视网膜血管的结构对于影响眼睛的疾病的诊断和治疗非常重要。参数Lindenmayer系统(L-system)是强大的基于规则的方法之一,它具有使用简单的重写规则生成树状结构的强大功能。在这项研究中,提出了一种新颖的框架,该框架可用于基于可用图像对视网膜脉管系统进行建模。该框架为一般开放性问题的特殊情况提供了一种解决方案,即L系统逆问题,其中应基于表示特定树状结构的图像获得L系统规则。在这项研究中,基于特征匹配和L系统语法比较的具有新颖目标函数的遗传算法已与非线性回归一起用于解决参数L系统逆问题。产生的L系统生长规则已被用于预测难以接近的血管分支。模型结果与不同案例研究的目标结构之间的图形和定量比较表明,所提出的框架可用于准确生成视网膜血管的结构。即使在缺少足够图像数据的情况下,它也可以提供可接受的预测。

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