首页> 美国卫生研究院文献>Medical Physics >Dosimetric comparison of Acuros XB deterministic radiation transport method with Monte Carlo and model-based convolution methods in heterogeneous media
【2h】

Dosimetric comparison of Acuros XB deterministic radiation transport method with Monte Carlo and model-based convolution methods in heterogeneous media

机译:异质介质中Acuros XB确定性辐射传输方法与蒙特卡洛方法和基于模型的卷积方法的剂量学比较

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

>Purpose: The deterministic Acuros XB (AXB) algorithm was recently implemented in the Eclipse treatment planning system. The goal of this study was to compare AXB performance to Monte Carlo (MC) and two standard clinical convolution methods: the anisotropic analytical algorithm (AAA) and the collapsed-cone convolution (CCC) method.>Methods: Homogeneous water and multilayer slab virtual phantoms were used for this study. The multilayer slab phantom had three different materials, representing soft tissue, bone, and lung. Depth dose and lateral dose profiles from AXB v10 in Eclipse were compared to AAA v10 in Eclipse, CCC in Pinnacle3, and EGSnrc MC simulations for 6 and 18 MV photon beams with open fields for both phantoms. In order to further reveal the dosimetric differences between AXB and AAA or CCC, three-dimensional (3D) gamma index analyses were conducted in slab regions and subregions defined by AAPM Task Group 53.>Results: The AXB calculations were found to be closer to MC than both AAA and CCC for all the investigated plans, especially in bone and lung regions. The average differences of depth dose profiles between MC and AXB, AAA, or CCC was within 1.1, 4.4, and 2.2%, respectively, for all fields and energies. More specifically, those differences in bone region were up to 1.1, 6.4, and 1.6%; in lung region were up to 0.9, 11.6, and 4.5% for AXB, AAA, and CCC, respectively. AXB was also found to have better dose predictions than AAA and CCC at the tissue interfaces where backscatter occurs. 3D gamma index analyses (percent of dose voxels passing a 2%∕2 mm criterion) showed that the dose differences between AAA and AXB are significant (under 60% passed) in the bone region for all field sizes of 6 MV and in the lung region for most of field sizes of both energies. The difference between AXB and CCC was generally small (over 90% passed) except in the lung region for 18 MV 10 × 10 cm2 fields (over 26% passed) and in the bone region for 5 × 5 and 10 × 10 cm2 fields (over 64% passed). With the criterion relaxed to 5%∕2 mm, the pass rates were over 90% for both AAA and CCC relative to AXB for all energies and fields, with the exception of AAA 18 MV 2.5 × 2.5 cm2 field, which still did not pass.>Conclusions: In heterogeneous media, AXB dose prediction ability appears to be comparable to MC and superior to current clinical convolution methods. The dose differences between AXB and AAA or CCC are mainly in the bone, lung, and interface regions. The spatial distributions of these differences depend on the field sizes and energies.
机译:>目的:最近在Eclipse治疗计划系统中实现了确定性的Acuros XB(AXB)算法。这项研究的目的是比较AXB性能与蒙特卡洛(MC)和两种标准的临床卷积方法:各向异性分析算法(AAA)和折叠锥卷积(CCC)方法。>方法:均质水和多层平板虚拟体模用于这项研究。多层平板体模具有三种不同的材料,分别代表软组织,骨骼和肺部。将Eclipse中AXB v10的深度剂量和侧向剂量分布与Eclipse中的AAA v10,Pinnacle 3 中的CCC以及6个和18个MV光子束的EGSnrc MC模拟进行了比较,两个模体均具有开放视野。为了进一步揭示AXB与AAA或CCC之间的剂量学差异,在AAPM任务组53定义的平板区域和子区域中进行了三维(3D)伽马指数分析。>结果:AXB计算在所有调查计划中,特别是在骨骼和肺部区域,被发现比AAA和CCC更接近MC。对于所有场和能量,MC和AXB,AAA或CCC之间的深度剂量分布的平均差异分别在1.1%,4.4%和2.2%之内。更具体地说,这些骨区域的差异分别高达1.1%,6.4%和1.6%。肺部的AXB,AAA和CCC分别高达0.9%,11.6和4.5%。还发现在发生反向散射的组织界面上,AXB具有比AAA和CCC更好的剂量预测。 3D伽玛指数分析(通过2%∕ 2 mm标准的体素的百分比)显示,对于所有6 MV视野大小,在骨区域中AAA和AXB之间的剂量差异显着(通过率低于60%)两种能量的大多数场大小的区域。 AXB和CCC之间的差异通常很小(通过率超过90%),除了在18 MV 10×10 cm 2 场的肺区域(通过率超过26%)和在骨骼区域中5×的差异(通过率) 5和10××10 cm 2 字段(通过率超过64%)。将标准放宽到5%∕ 2 mm,对于所有能量和场,AAA和CCC相对于AXB的通过率均超过90%,除了AAA 18 MV 2.5×2.5 cm 2 结论:在异构介质中,AXB剂量预测能力似乎与MC相当,并且优于当前的临床卷积方法。 AXB与AAA或CCC之间的剂量差异主要在骨骼,肺部和界面区域。这些差异的空间分布取决于场大小和能量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号