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A Reconstruction Approach for Imaging in 3D Cone Beam Vector Field Tomography

机译:3D锥形束矢量场层析成像的成像重建方法

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摘要

3D cone beam vector field tomography (VFT) aims for reconstructing and visualizing the velocity field of a moving fluid by measuring line integrals of projections of the vector field. The data are obtained by ultrasound measurements along a scanning curve which surrounds the object. From a mathematical point of view, we have to deal with the inversion of the vectorial cone beam transform. Since the vectorial cone beam transform of any gradient vector field with compact support is identically equal to zero, we can only hope to reconstruct the solenoidal part of an arbitrary vector field. In this paper we will at first summarize important properties of the cone beam transform for three-dimensional solenoidal vector fields and then propose a solution approach based on the method of approximate inverse. In this context, we intensively make use of results from scalar 3D computerized tomography. The findings presented in the paper will continuously be illustrated by pictures from first numerical experiments done with exact, simulated data.
机译:3D锥束矢量场断层扫描(VFT)旨在通过测量矢量场投影的线积分来重建和可视化运动流体的速度场。通过沿着围绕对象的扫描曲线进行超声测量获得数据。从数学的角度来看,我们必须处理矢量锥束变换的反演。由于具有紧凑支持的任何梯度矢量场的矢量锥束变换都等于零,因此我们只能希望重建任意矢量场的螺线管部分。在本文中,我们将首先概述三维螺线管矢量场的锥束变换的重要性质,然后提出一种基于近似逆方法的求解方法。在这种情况下,我们集中利用标量3D计算机断层扫描的结果。本文中提出的发现将通过使用精确的模拟数据进行的首次数值实验得到的图片不断说明。

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