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Multi-energy image sequence fusion based on variable energy X-ray imaging

机译:基于可变能量X射线成像的多能量图像序列融合

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For complicated structural components characterized by wide X-ray attenuation ranges, the conventional fixedenergy imaging mode cannot obtain all structural information using a single tube voltage. This limitation results in information shortage, because the effective thickness of components along the orientation of the X-ray penetration exceeds the limit of the dynamic range of the X-ray imaging system. To solve this problem, multi-energy image sequence fusion technology has been advanced. In this new method, the tube voltage is adjusted several times by matching the voltage and the effective thickness to obtain all the effective local information on an object. Then, the subset sequences in the multi-energy image sequence are extracted based on the recursive template, and that are fused to reconstruct the full projection information based on linear weighting. An accompanying experiment demonstrates that the new technology can extend the dynamic range of X-ray imaging and provide a complete representation of the internal structure of complicated structural components.
机译:对于特征在于宽X射线衰减范围的复杂结构部件,常规固定能量成像模式无法使用单个管电压获得所有结构信息。这种限制导致信息短缺,因为沿着X射线穿透方向的组件的有效厚度超过了X射线成像系统动态范围的限制。为了解决这个问题,已经提出了多能量图像序列融合技术。在这种新方法中,通过匹配电压和有效厚度来多次调整管电压,以获得关于物体的所有有效局部信息。然后,基于递归模板提取多能量图像序列中的子集序列,并将其融合以基于线性加权重建完整的投影信息。伴随的实验表明,新技术可以扩展X射线成像的动态范围,并提供复杂结构部件内部结构的完整表示。

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