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Defining and computing stable representations of volume shapes from discrete trace using volume primitives: Application to 3D image analysis in soil science

机译:使用体积原语定义和计算离散轨迹中体积形状的稳定表示形式:在土壤科学中的3D图像分析中的应用

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This paper presents an innovative approach for defining and computing stable (intrinsic) representations describing volume shapes from discrete traces without any a priori information. We assume that the discrete trace of the volume shape is defined by a binary 3D image where all marked points define the shape. Our basic idea is to describe the corresponding volume using a set of patches of volume primitives (bowls, cylinders, cones...). The volume primitives representation is assumed to optimize a criterion ensuring its stability and including a characterization of its scale (trade-off: fitting errorsumber of patches). Our criterion takes also into account the preservation of topological properties of the initial shape representation (number of connected components, adjacency relationships...). We propose an efficient computing way to optimize this criterion using optimal region growing in an adjacency valuated graph representing the primitives and their adjacency relationships. Our method is applied to the modelling of porous media from 3D soil images. This new geometrical and topological representation of the pore network can be used to characterize soil properties.
机译:本文提出了一种创新的方法,用于定义和计算稳定的(固有的)表示形式,这些表示形式描述了离散轨迹中的体积形状而没有任何先验信息。我们假设体形的离散轨迹是由二进制3D图像定义的,其中所有标记点都定义了形状。我们的基本思想是使用一组体积图元(碗,圆柱,圆锥体...)来描述相应的体积。假定体元图元表示可优化标准,以确保其稳定性并包括其规模的表征(权衡:拟合误差/补丁数量)。我们的标准还考虑了保留初始形状表示的拓扑属性(连接的组件数,邻接关系...)。我们提出了一种有效的计算方法,该方法可以使用生长在代表原始图元及其邻接关系的邻接估值图中的最佳区域来优化此准则。我们的方法适用于根据3D土壤图像对多孔介质进行建模。孔隙网络的这种新的几何和拓扑表示可用于表征土壤特性。

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