Chen Ping, Han Yan, Pan Jin-Xiao
National Key Laboratory for Electronic Measurement Technology, North University of China, Taiyuan 030051, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2013 May;33(5):1383-7.
In conventional X-ray imaging based on fixed energy, the ray image of the complicated structural component often appears overexposed or underexposed. This is because of the variations in the effective thickness of the component along the orientation of the X-ray penetration that exceed the limit of the dynamic range of the X-ray imaging system. Complete structural information cannot be obtained, and this lack will impact the quality of the X-ray image. To solve this problem, the technology of X-ray multispectrum imaging based on variable energy has advanced. In this new method, the tube voltage is adjusted several times to accommodate the full necessary range of effective thickness, and then, the extracted images are fused to reconstruct the full projection information. Experiment shows that for the 12 bit imaging system, the new technology makes the system's dynamic range expand 4 times, also completely represent the internal structure information of a complicated structural component.
在基于固定能量的传统X射线成像中,复杂结构部件的射线图像经常出现过度曝光或曝光不足的情况。这是因为部件沿X射线穿透方向的有效厚度变化超出了X射线成像系统动态范围的限制。无法获得完整的结构信息,这种缺失会影响X射线图像的质量。为了解决这个问题,基于可变能量的X射线多光谱成像技术得到了发展。在这种新方法中,多次调整管电压以适应有效厚度所需的全部范围,然后,将提取的图像融合以重建完整的投影信息。实验表明,对于12位成像系统,新技术使系统的动态范围扩大了4倍,也能完全呈现复杂结构部件的内部结构信息。