Measurement of 3D displacement fields from few tomographic projections

T. Taillandier-Thomas, C. Jailin, S. Roux, F. Hild
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引用次数: 10

Abstract

The present paper aims at providing 3D volume images of a deformed specimen based on i) a full 3D image describing the reference state as obtained e.g., from conventional computed tomography and ii) the 3D displacement field accounting for its motion. The displacement field, which is described by much fewer degrees of freedom than the specimen volume itself, is here proposed to be determined from very few projections. The reduction in number of needed projections may be larger than two orders of magnitude. In the proposed approach, the displacement field is described over an unstructured mesh composed of tetrahedra with linear shape functions. The mesh is based on the reconstructed reference volume so that it provides a faithful and accurate description of the specimen, including its boundary. Nodal displacements are determined from the minimization of the quadratic difference between the computed projections of the deformed configuration and the acquired projections (radiographs) for the selected orientations. Well-posedness of the problem requires the number of kinematic unknowns to be small. However, in cases where the geometry is complex, the displacement field may call for many parameters. To deal with such conflicting demands it is proposed to use a regularization based on the mechanical modeling of the displacement field using a linear elastic description.
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利用少量层析投影测量三维位移场
本文旨在基于i)描述参考状态的完整3D图像(例如,从常规计算机断层扫描获得)和ii)考虑其运动的3D位移场,提供变形试样的三维体图像。位移场的自由度要比试样体积本身少得多,这里建议由很少的投影来确定。所需预测数量的减少可能大于两个数量级。在该方法中,位移场描述在具有线性形状函数的四面体组成的非结构化网格上。网格是基于重建的参考体积,因此它提供了标本的忠实和准确的描述,包括其边界。节点位移由计算出的变形构型投影和获得的投影(射线照片)之间的二次差的最小化来确定。问题的适定性要求运动未知数的数目很小。然而,在几何结构复杂的情况下,位移场可能需要许多参数。为了处理这种相互冲突的要求,提出了一种基于线性弹性描述的位移场力学建模的正则化方法。
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