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用于AQURE移动加速器产生的电子束能谱重建的对偶退火方法中正则化参数的优化。

Optimization of the regularization parameter in the Dual Annealing method used for the reconstruction of energy spectrum of electron beam generated by the AQURE mobile accelerator.

作者信息

Ryczkowski Adam, Piotrowski Tomasz, Staszczak Marcin, Wiktorowicz Marcin, Adrich Przemysław

机构信息

Department of Electroradiology, Poznan University of Medical Sciences, Poznan, Poland; Department of Medical Physics, Greater Poland Cancer Centre, Poznan, Poland.

Department of Electroradiology, Poznan University of Medical Sciences, Poznan, Poland; Department of Medical Physics, Greater Poland Cancer Centre, Poznan, Poland; Department of Biomedical Physics, Adam Mickiewicz University in Poznan, Poznan, Poland.

出版信息

Z Med Phys. 2024 Nov;34(4):510-520. doi: 10.1016/j.zemedi.2023.03.003. Epub 2023 Apr 21.

Abstract

INTRODUCTION

The shape of the energy spectrum is an essential component of any electron beam Monte Carlo model. Due to specialized equipment and the long measurement time for the direct methods for determining the energy spectrum, attractive alternatives are backward spectrum reconstructions from the measured data. One such approach is solving the first-degree Fredholm integral equation with appropriate regularization. It makes it possible to calculate the depth distribution as the sum of the distributions from monoenergetic beams. This study aims to determine the optimal value of the regularization parameter for the problem of determining the spectrum of the electron beam produced by a mobile accelerator used during intraoperative radiotherapy.

MATERIAL AND METHODS

The Geant4 package was used to generate the distributions of deep doses for monoenergetic beams for two models with different degrees of complexity, i.e. simple (theoretical) and full (for the mobile accelerator). The dose distributions for four different shapes of energy spectrum (for each model) were obtained similarly. They were established as the reference data for further calculations. The Dual Annealing optimization method was used to obtain the reconstructed spectrum. The multiple optimizations that differ by the regularization parameter (ranging from 0 to 1) were performed. For each reconstruction, similarity indicators of the energy spectrum and the dose distribution to the referenced data were calculated to determine the optimal regularization parameters.

RESULTS

Optimal regularization parameters determined by similarity indicators for the spectrum and the dose distribution differ for geometry models considered in the study. The regularization parameter for the simple geometry ranged from 0.03 to 0.05, while for full geometry, they were from 0.05 to 0.06. The results for conventional linear accelerators found in the literature range from 0.5 to 1.1.

CONCLUSION

The Dual Annealing optimization method can be effectively used to solve the Fredholm equation with Tikhonov regularization to reconstruct an electron beam's energy spectrum. The regularization parameter value depends on the beam-forming system. Its value for the mobile accelerator considered in the study ranges from 0.05 to 0.06, depending on the nominal beam energy value.

摘要

引言

能谱形状是任何电子束蒙特卡罗模型的重要组成部分。由于用于确定能谱的直接方法需要专门设备且测量时间长,从测量数据进行反向能谱重建成为有吸引力的替代方法。一种这样的方法是用适当的正则化求解一阶弗雷德霍姆积分方程。这使得能够将深度分布计算为单能束分布的总和。本研究旨在确定术中放疗使用的移动加速器产生的电子束能谱确定问题的正则化参数的最佳值。

材料与方法

使用Geant4软件包为两个不同复杂程度的模型生成单能束的深度剂量分布,即简单(理论)模型和完整(针对移动加速器)模型。类似地获得了四种不同能谱形状(每个模型)的剂量分布。它们被确定为进一步计算的参考数据。使用双退火优化方法获得重建能谱。对正则化参数(范围从0到1)不同的情况进行了多次优化。对于每次重建,计算能谱和剂量分布与参考数据的相似性指标,以确定最佳正则化参数。

结果

本研究中考虑的几何模型,由能谱和剂量分布的相似性指标确定的最佳正则化参数不同。简单几何模型的正则化参数范围为0.03至0.05,而完整几何模型的正则化参数为0.05至0.06。文献中常规直线加速器的结果范围为0.5至1.1。

结论

双退火优化方法可有效地用于求解带蒂霍诺夫正则化的弗雷德霍姆方程,以重建电子束能谱。正则化参数值取决于束流形成系统。根据标称束能量值,本研究中考虑的移动加速器的该值范围为0.05至0.06。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94b3/11624413/7a22ef07f639/gr1.jpg

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