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Transmission tomography of forward-scattering structures

机译:前向散射结构的透射层析成像

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摘要

A method of multiple-shot scatter correction in transmission tomography systems is considered. It is assumed that the scattering is confined within a cone of relatively small angles, and the propagation is governed by a standard parabolic wave equation. An approximate directed-wave propagator may then be obtained, which relates a set of diffraction patterns measured for a multitude of point sources, to a linogram of the object. Introducing a specially designed coordinate transformation, we rewrite this propagator in a separable form as a paired Fresnel transform. Further, a corresponding inverse operator is applied to extract emulated projections (constituting jointly a sinogram) of the object from the measured data. Apart from the original algorithm, which suffers essentially from truncation errors, its improved, considerably more robust version is also constructed. The estimated sinograms may be inverted by any of the existing methods including a filtered back-projection or algebraic reconstruction techniques. The results of simulations show an essential reduction of diffraction/scattering artifacts and improved resolution of reconstructed images. At the same time it is found that scatter correction may cause object-dependent ring artifacts observed in the tomograms. (C) 2016 Optical Society of America
机译:考虑了一种在透射层析成像系统中的多次散射校正的方法。假设散射被限制在相对较小角度的圆锥内,并且传播受标准抛物线波动方程控制。然后可以获得近似的定向波传播器,该传播器将针对多个点源测量的一组衍射图样与对象的线性图相关联。引入专门设计的坐标变换,我们将这种传播器以可分离的形式重写为成对的菲涅耳变换。此外,使用相应的逆算子从测量数据中提取对象的仿真投影(共同构成正弦图)。除了原始算法(基本上会遭受截断错误)之外,还构造了其改进的,功能更强大的版本。可以通过包括滤波反投影或代数重构技术在内的任何现有方法来反转估计的正弦图。仿真结果表明,衍射/散射伪像的减少和重构图像分辨率的提高。同时,发现散射校正可能会导致在断层图中观察到依赖于对象的环形伪影。 (C)2016美国眼镜学会

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