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Beam-hardening correction method based on original sinogram for X-CT

机译:基于原始正弦图的X-CT束硬化校正方法

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摘要

Beam hardening caused by the polychromatic spectrum is an important problem in X-ray computed tomography (X-CT). It leads to various artifacts in reconstruction images and reduces image quality. A correction method for beam hardening, involving simple operations of the original polychromatic projection sinogram, is here presented based on the analysis of three physics characteristics implied by beam hardening. Its correction principle has been deduced by two mathematical theorems. Excellent correction results have been obtained from computer simulations and CT scan experiments of two phantoms and aero-engine turbine blades. Beam-hardening artifacts are greatly reduced. This method has two outstanding advantages compared with the conventional method with the polynomial fit technique. First, it does not need a prior CT scan and the complex operations to create a correction model. Second, its validity is not limited by the composition of the scanned object and scan conditions.
机译:由多色光谱引起的束硬化是X射线计算机断层摄影(X-CT)中的重要问题。这会导致重建图像中出现各种伪像,并降低图像质量。本文在分析光束硬化所隐含的三个物理特性的基础上,提出了一种光束硬化的校正方法,该方法涉及原始多色投影正弦图的简单操作。它的校正原理由两个数学定理推导出来。通过两个模体和航空发动机涡轮叶片的计算机仿真和CT扫描实验,获得了出色的校正结果。束硬化伪影大大减少。与采用多项式拟合技术的传统方法相比,该方法具有两个突出的优点。首先,它不需要事先进行CT扫描和复杂的操作即可创建校正模型。其次,其有效性不受扫描对象的组成和扫描条件的限制。

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