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Convolution backprojection formulas for 3-D vector tomography with application to MRI

机译:3-D矢量断层扫描的卷积反投影公式及其在MRI中的应用

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Vector tomography is the reconstruction of vector fields from measurements of their projections. In previous work, it has been shown that the reconstruction of a general three-dimensional (3-D) vector field is possible from the so-called inner product measurements. It has also been shown how the reconstruction of either the irrotational or solenoidal component of a vector field can be accomplished with fewer measurements than that required for the full field. The present paper makes three contributions. First, in analogy to the two-dimensional (2-D) approach of Norton (1988), several 3-D projection theorems are developed. These lead directly to new vector field reconstruction formulas that are convolution backprojection formulas. It is shown how the local reconstruction property of these 3-D reconstruction formulas permits reconstruction of point flow or of regional flow from a limited data set. Second, simulations demonstrating 3-D reconstructions, both local and nonlocal, are presented. Using the formulas derived herein and those derived in previous work, these results demonstrate the reconstruction of the irrotational and solenoidal components, their potential functions, and the field itself from simulated inner product measurement data. Finally, it is shown how 3-D inner product measurements can be acquired using a magnetic resonance scanner.
机译:矢量断层扫描是通过测量矢量场的投影来重建矢量场。在先前的工作中,已经表明,可以从所谓的内积测量中重建一般的三维(3-D)矢量场。还显示了如何用比全场所需的测量更少的测量来完成矢量场的旋转或螺线管分量的重建。本文做出了三点贡献。首先,类似于Norton(1988)的二维(2-D)方法,开发了几种3-D投影定理。这些直接导致新的向量场重构公式,即卷积反投影公式。显示了这些3-D重建公式的局部重建特性如何允许从有限的数据集中重建点流或区域流。其次,介绍了演示3D重建的仿真,包括局部和非局部的。使用本文中得出的公式以及先前工作中得出的公式,这些结果证明了从模拟内积测量数据重建的旋转和螺线管组件,其势函数以及磁场本身。最后,显示了如何使用磁共振扫描仪获取3-D内部产品测量值。

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