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Single-energy material decomposition using X-ray path length estimation

机译:使用X射线路径长度估计的单能材料分解

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Objective: Clinical computed tomographies (CTs) can typically use only a single energy at a time. The main purpose of the present paper was to study whether the calculated x-ray path lengths can help replace one of the 2 dual-energy measurements by 2-material decomposition. METHOD: The proposed single-energy material decomposition method (SEMD) is based on the evaluation of a single CT scan. The SEMD combines postreconstruction and prereconstruction algorithms for the determination of x-ray path length and material decomposition, respectively. Results: The simulation results of the proposed and dual-energy methods were compared using pregenerated look-up tables. The results show that SEMD is more sensitive to CT signal errors at higher tube voltages. The dual-energy method is generally less sensitive to CT signal bias but more sensitive to the noise. Conclusions: In the case of inferior signal errors, the proposed method gives the same results as the dual-energy variant. Although the x-ray path length estimation method with SEMD is more complex, the dose is considerably lower.
机译:目的:临床计算机断层扫描(CT)通常一次只能使用一种能量。本文的主要目的是研究所计算的X射线路径长度是否可以通过2材料分解来替代2种双能测量之一。方法:所提出的单能材料分解方法(SEMD)是基于单CT扫描的评估。 SEMD结合了重建后和重建前算法,分别用于确定X射线路径长度和材料分解。结果:使用预生成的查找表比较了建议的方法和双重能量方法的模拟结果。结果表明,在较高的管电压下,SEMD对CT信号误差更敏感。通常,双能量方法对CT信号偏置不敏感,但对噪声更敏感。结论:在信号误差较小的情况下,该方法给出的结果与双能量变量相同。尽管使用SEMD的X射线路径长度估计方法更为复杂,但剂量却要低得多。

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