Park Hyoung Suk, Chung Yong Eun, Seo Jin Keun
Department of Computational Science and Engineering, Yonsei University, Seoul, Republic of Korea.
Department of Radiology, Yonsei University College of Medicine, Seoul, Republic of Korea.
Philos Trans A Math Phys Eng Sci. 2015 Jun 13;373(2043). doi: 10.1098/rsta.2014.0388.
This paper presents a mathematical characterization and analysis of beam-hardening artefacts in X-ray computed tomography (CT). In the field of dental and medical radiography, metal artefact reduction in CT is becoming increasingly important as artificial prostheses and metallic implants become more widespread in ageing populations. Metal artefacts are mainly caused by the beam-hardening of polychromatic X-ray photon beams, which causes mismatch between the actual sinogram data and the data model being the Radon transform of the unknown attenuation distribution in the CT reconstruction algorithm. We investigate the beam-hardening factor through a mathematical analysis of the discrepancy between the data and the Radon transform of the attenuation distribution at a fixed energy level. Separation of cupping artefacts from beam-hardening artefacts allows causes and effects of streaking artefacts to be analysed. Various computer simulations and experiments are performed to support our mathematical analysis.
本文介绍了X射线计算机断层扫描(CT)中束硬化伪影的数学表征与分析。在牙科和医学放射成像领域,随着人工假体和金属植入物在老年人群中越来越普遍,减少CT中的金属伪影变得越来越重要。金属伪影主要由多色X射线光子束的束硬化引起,这会导致实际正弦图数据与CT重建算法中未知衰减分布的Radon变换的数据模型之间不匹配。我们通过对固定能量水平下数据与衰减分布的Radon变换之间的差异进行数学分析来研究束硬化因子。将杯状伪影与束硬化伪影分离,可以分析条纹伪影的成因和影响。进行了各种计算机模拟和实验来支持我们的数学分析。