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迭代离子 CT 重建中路径估计对临床样例的影响。

The impact of path estimates in iterative ion CT reconstructions for clinical-like cases.

机构信息

Department of Radiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, United States of America.

Department of Medical Physics, Faculty of Physics, Ludwig-Maximilians-Universität München, Garching b. München, Germany.

出版信息

Phys Med Biol. 2021 Apr 23;66(9). doi: 10.1088/1361-6560/abf1ff.

Abstract

Ion computed tomography (CT) promises to mitigate range uncertainties inherent in the conversion of x-ray Hounsfield units into ion relative stopping power (RSP) for ion beam therapy treatment planning. To improve accuracy and spatial resolution of ion CT by accounting for statistical multiple Coulomb scattering deflection of the ion trajectories from a straight line path (SLP), the most likely path (MLP) and the cubic spline path (CSP) have been proposed. In this work, we use FLUKA Monte Carlo simulations to investigate the impact of these path estimates in iterative tomographic reconstruction algorithms for proton, helium and carbon ions. To this end the ordered subset simultaneous algebraic reconstruction technique was used and coupled with a total variation superiorization (TVS). We evaluate the image quality and dose calculation accuracy in proton therapy treatment planning of cranial patient anatomies. CSP and MLP generally yielded nearly equal image quality with an average RSP relative error improvement over the SLP of 0.6%, 0.3% and 0.3% for proton, helium and carbon ion CT, respectively. Bone and low density materials have been identified as regions of largest enhancement in RSP accuracy. Nevertheless, only minor differences in dose calculation results were observed between the different models and relative range errors of better than 0.5% were obtained in all cases. Largest improvements were found for proton CT in complex scenarios with strong heterogeneities along the beam path. The additional TVS provided substantially reduced image noise, resulting in improved image quality in particular for soft tissue regions. Employing the CSP and MLP for iterative ion CT reconstructions enabled improved image quality over the SLP even in realistic and heterogeneous patient anatomy. However, only limited benefit in dose calculation accuracy was obtained even though an ideal detector system was simulated.

摘要

离子计算机断层扫描(CT)有望减轻在将 X 射线亨氏单位转换为离子束治疗计划中的离子相对阻止本领(RSP)时固有的射程不确定性。为了通过考虑离子轨迹从直线路径(SLP)的统计多次库仑散射偏转而提高离子 CT 的准确性和空间分辨率,已经提出了最可能路径(MLP)和三次样条路径(CSP)。在这项工作中,我们使用 FLUKA 蒙特卡罗模拟来研究这些路径估计在质子、氦和碳离子迭代层析重建算法中的影响。为此,我们使用有序子集同时代数重建技术(ordered subset simultaneous algebraic reconstruction technique)并将其与全变差超优化(total variation superiorization,TVS)相结合。我们评估了颅部患者解剖结构的质子治疗计划中的图像质量和剂量计算准确性。CSP 和 MLP 通常产生几乎相等的图像质量,与 SLP 相比,质子、氦和碳离子 CT 的 RSP 相对误差分别提高了 0.6%、0.3%和 0.3%。骨骼和低密度材料已被确定为 RSP 准确性最大提高的区域。然而,在不同模型之间观察到剂量计算结果仅略有差异,并且在所有情况下都获得了优于 0.5%的相对射程误差。在具有沿射束路径的强烈非均匀性的复杂情况下,质子 CT 发现了最大的改进。额外的 TVS 大大降低了图像噪声,从而特别是在软组织区域提高了图像质量。即使在现实和异质的患者解剖结构中,采用 CSP 和 MLP 进行迭代离子 CT 重建也可以提高图像质量。然而,即使模拟了理想的探测器系统,在剂量计算准确性方面也仅获得了有限的收益。

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