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A filter design method for beam hardening correction in middle-energy X-ray Computed Tomography

机译:中能X射线计算机断层扫描中束硬化校正的滤波器设计方法

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Beam hardening artifact is common in X-ray computed tomography (X-CT). Using the metal sheet as a filter to preferentially attenuate low-energy photons is a simple and effective way for beam hardening artifact correction. However, generally it requires a large quantity of experiments to compare the filter material and thickness, which is lack of guidance of theory. In this paper, a novel filter design method for beam hardening correction, especially for middle-energy X-CT, is presented. First, the spectrum of X-ray source under a certain tube voltage is estimated by Monte Carlo (MC) simulation or other simulation methods. Next, according to the X-ray mass attenuation coefficients of the object material, the energy range to be retained can be roughly determined in which the attenuation coefficients change slowly. Then, the spectra filtering performance with different filter materials and thicknesses can be calculated using the X-ray mass attenuation coefficients of each filter material and the simulated primitive spectrum. After that, the mean energy ratio (MER) of post-filter mean energy to pre-filter mean energy is obtained. Finally, based on the spectrum filtering performance and MER of the metal material, a suitable filter strategy is easily selected. Experimental results show that, the proposed method is simple and effective on beam hardening correction as well as increasing the image quality.
机译:束硬化伪影在X射线计算机断层扫描(X-CT)中很常见。使用金属片作为过滤器优先衰减低能光子是一种用于束硬化伪影校正的简单有效的方法。但是,通常需要大量的实验来比较过滤器的材料和厚度,这在理论上缺乏指导。本文提出了一种新的用于束硬化校正的滤波器设计方法,特别是对于中能X-CT。首先,通过蒙特卡洛(MC)模拟或其他模拟方法估算在一定管电压下的X射线源光谱。接下来,根据目标材料的X射线质量衰减系数,可以大致确定衰减系数缓慢变化的要保持的能量范围。然后,可以使用每种过滤材料的X射线质量衰减系数和模拟原始光谱来计算使用不同过滤材料和厚度的光谱过滤性能。之后,获得过滤后平均能量与过滤前平均能量的平均能量比(MER)。最后,基于金属材料的光谱过滤性能和MER,可以轻松选择合适的过滤策略。实验结果表明,该方法简便,有效,并且可以提高图像质量。

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