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首页> 外文期刊>Journal of X-ray science and technology >Application of projection simulation based on physical imaging model to the evaluation of beam hardening corrections in X-ray transmission tomography
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Application of projection simulation based on physical imaging model to the evaluation of beam hardening corrections in X-ray transmission tomography

机译:基于物理成像模型的投影模拟在X射线透射层析成像的束硬化校正评估中的应用

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摘要

The polychromatic spectrum of photons emitted by an X-ray tube in medical diagnostic CT system brings beam hardening artifact. Although many correction methods have been developed, it is still the major artifact in clinical CT imaging. Motivated by CT reconstruction researches benefiting from mathematical phantoms, one so-called physical mathematical phantom and its projection simulation are presented in this paper, which are used in comprehensive evaluation of beam hardening corrections. Due to the inherent merits as compared to discrete and stochastic simulations, an analytic method is proposed to simulate the polychromatic projections of FORBILD head phantom. Firstly, CT-numbers are mapped to material compositions under the precondition sub-regions represent different human tissues. Second, boundary parameters of subregions are determined by the presented algorithms. Finally, projections are calculated according to X-ray energy spectrum. For validating the usefulness of our simulation, several typical correction methods are analyzed using simulated projections. The performance of every correction is exhibited distinctly. The analysis results show that there are still the spaces to improve those correction methods.
机译:医学诊断CT系统中X射线管发射的光子的多色光谱带来了束硬化伪影。尽管已经开发出许多校正方法,但它仍然是临床CT成像中的主要伪影。基于受益于数学模型的CT重建研究,本文提出了一种所谓的物理数学模型及其投影仿真,将其用于梁硬化校正的综合评估。由于与离散和随机模拟相比具有固有的优点,因此提出了一种分析方法来模拟FORBILD头部模型的多色投影。首先,将CT编号映射到代表不同人体组织的前提子区域下的物质成分。其次,通过所提出的算法来确定子区域的边界参数。最后,根据X射线能谱计算投影。为了验证我们模拟的有效性,使用模拟投影分析了几种典型的校正方法。每次校正的性能都有明显的表现。分析结果表明,仍然存在改进这些校正方法的空间。

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