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首页> 外文期刊>IEEE Transactions on Pattern Analysis and Machine Intelligence >Surface reconstruction using deformable models with interior and boundary constraints
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Surface reconstruction using deformable models with interior and boundary constraints

机译:使用具有内部和边界约束的可变形模型进行曲面重建

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摘要

The authors introduce a technique for 3D surface reconstruction using elastic deformable-models. The model used is an imaginary elastic grid, which is made of membranous, thin-plate-type material. The elastic grid can bent, twisted, compressed, and stretched into any desired 3D shape, which is specified by the shape constraints derived automatically from images of a real 3D object. Shape reconstruction is guided by a set of imaginary springs that enforce the consistency in the position, orientation, and/or curvature measurements of the elastic grid and the desired shape. The dynamics of a surface reconstruction process is regulated by Hamilton's principle or the principle of the least action. Furthermore, a 1D deformable template that borders the elastic grid may be used. This companion boundary template is attracted/repelled by image forces to conform with the silhouette of the imaged object. Implementation results using simple analytic shapes and images of real objects are presented.
机译:作者介绍了一种使用弹性可变形模型进行3D表面重建的技术。所使用的模型是假想的弹性网格,它由膜状薄板型材料制成。弹性网格可以弯曲,扭曲,压缩和拉伸成任何所需的3D形状,该形状由从真实3D对象的图像自动得出的形状约束指定。形状重建由一组虚拟弹簧引导,这些弹簧在弹性网格和所需形状的位置,方向和/或曲率测量中保持一致。表面重建过程的动力学由汉密尔顿原理或最小作用原理来调节。此外,可以使用与弹性网格相邻的一维可变形模板。该伴随边界模板被图像力吸引/排斥,以与被成像物体的轮廓相符。给出了使用简单分析形状和真实对象图像的实现结果。

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