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首页> 外文期刊>BioMed research international >A Review on the Use of Grid-Based Boltzmann Equation Solvers for Dose Calculation in External Photon Beam Treatment Planning
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A Review on the Use of Grid-Based Boltzmann Equation Solvers for Dose Calculation in External Photon Beam Treatment Planning

机译:外部光子束治疗计划中基于网格的玻耳兹曼方程求解器用于剂量计算的综述

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摘要

Deterministic linear Boltzmann transport equation (D-LBTE) solvers have recently been developed, and one of the latest available software codes, Acuros XB, has been implemented in a commercial treatment planning system for radiotherapy photon beam dose calculation. One of the major limitations of most commercially available model-based algorithms for photon dose calculation is the ability to account for the effect of electron transport. This induces some errors in patient dose calculations, especially near heterogeneous interfaces between low and high density media such as tissue/lung interfaces. D-LBTE solvers have a high potential of producing accurate dose distributions in and near heterogeneous media in the human body. Extensive previous investigations have proved that D-LBTE solvers were able to produce comparable dose calculation accuracy as Monte Carlo methods with a reasonable speed good enough for clinical use. The current paper reviews the dosimetric evaluations of D-LBTE solvers for external beam photon radiotherapy. This content summarizes and discusses dosimetric validations for D-LBTE solvers in both homogeneous and heterogeneous media under different circumstances and also the clinical impact on various diseases due to the conversion of dose calculation from a conventional convolution/superposition algorithm to a recently released D-LBTE solver.
机译:确定性线性玻尔兹曼输运方程(D-LBTE)求解器最近已经开发出来,最新的可用软件代码之一Acuros XB已在放射治疗光子束剂量计算的商业治疗计划系统中实现。对于光子剂量计算,大多数可商购的基于模型的算法的主要局限之一是考虑电子传输效应的能力。这会在患者剂量计算中引起一些错误,尤其是在低密度介质和高密度介质之间的异质界面(例如组织/肺界面)附近。 D-LBTE求解器具有在人体内异质介质中及附近产生精确剂量分布的巨大潜力。先前的大量研究证明,D-LBTE求解器能够产生与Monte Carlo方法相当的剂量计算精度,并且其合理的速度足以满足临床需求。本文综述了D-LBTE求解器对外部束光子放射治疗的剂量学评估。本内容总结并讨论了D-LBTE求解器在不同情况下均质和非均质介质中的剂量学验证,以及由于剂量计算从常规卷积/叠加算法转换为最新发布的D-LBTE而对各种疾病的临床影响解算器。

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