Evaluation of Radiation Treatment Planning Algorithms in IMRT and VMAT: A Comparative Dosimetric Study in Lung Equivalent Heterogeneous Medium.

Atul Mishra, Ramji Pathak, Teerth Raj Verma, Anoop Kumar Srivastava, Surendra Prasad Mishra, Kailash Kumar Mittal, Sudesh Kumar Singh
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Abstract

Background: In Radiotherapy, computation of dose is important since in a small field with heterogeneity, dose is usually computed with discrepancies.

Objective: The present study was aimed to evaluate the dosimetry of treatment planning algorithms in lung equivalent heterogeneous medium for Volumetric Modulated Arc Therapy (VMAT) with step and shoot Intensity-Modulated Radiation Therapy (ss-IMRT), and dynamic Intensity-Modulated Radiation Therapy (d-IMRT).

Material and methods: In this experimental study, Computerized Imaging Reference System (CIRS) phantom was used with an inhomogeneous Racemosa wood cylinder for two types of tumors, namely, Left Lung Central Tumor (LCT) and Left Lung Peripheral Tumor (LPT) in the CIRS left lung cavity. The computed tomography (CT) datasets were employed with the generation of VMAT, d-IMRT and ss-IMRT plans for the LCT and LPT irradiated with 6 MV photon beams. In this study, the accuracy and efficacy of two algorithms: Monte Carlo (MC) and the Pencil Beam (PB), from the Monaco treatment planning system (TPS), were tested by using Gafchromic EBT3 films and CIRS thorax phantom.

Results: Regardless of treatment techniques, both algorithms exhibited higher divergence in LPT than LCT. In both LCT and LPT, the highest deviation was near the tumor-lung junction. However, the deviation was higher in the PB algorithm than MC algorithm, with a minimally acceptable variation of -0.8%.

Conclusion: The MC algorithm shows more consistency for EBT3 measured dose in lung equivalent heterogeneous medium. However, accurate dose predictions are complicated due to electronic disequilibrium within and at the interface of inhomogeneity. These constraints may cause variations from the anticipated outcomes of the treatments.

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评估 IMRT 和 VMAT 中的放射治疗规划算法:肺等效异质介质中的剂量测定比较研究。
背景:在放射治疗中,剂量的计算非常重要,因为在具有异质性的小场中,剂量的计算通常会出现偏差:本研究旨在评估肺等效异质介质中体积调制弧线疗法(VMAT)与步射调强放射治疗(ss-IMRT)和动态调强放射治疗(d-IMRT)治疗计划算法的剂量学:在这项实验研究中,计算机成像参考系统(CIRS)模型与不均匀的白茅木圆柱体一起用于CIRS左肺腔中的两种肿瘤,即左肺中心瘤(LCT)和左肺周围瘤(LPT)。计算机断层扫描(CT)数据集用于生成用 6 MV 光子束照射 LCT 和 LPT 的 VMAT、d-IMRT 和 ss-IMRT 计划。在这项研究中,有两种算法的准确性和有效性:通过使用 Gafchromic EBT3 胶片和 CIRS 胸腔模型,对摩纳哥治疗计划系统(TPS)的蒙特卡罗(MC)和铅笔光束(PB)进行了测试:无论采用哪种治疗技术,两种算法在 LPT 中的发散性都高于 LCT。在 LCT 和 LPT 中,肿瘤-肺交界处附近的偏差最大。然而,PB 算法的偏差高于 MC 算法,最小可接受偏差为-0.8%:结论:MC 算法对肺等效异质介质中 EBT3 测量剂量的一致性更高。然而,由于非均质介质内部和界面的电子不平衡,准确的剂量预测非常复杂。这些限制因素可能会导致与预期治疗结果的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Biomedical Physics and Engineering
Journal of Biomedical Physics and Engineering Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
2.90
自引率
0.00%
发文量
64
审稿时长
10 weeks
期刊介绍: The Journal of Biomedical Physics and Engineering (JBPE) is a bimonthly peer-reviewed English-language journal that publishes high-quality basic sciences and clinical research (experimental or theoretical) broadly concerned with the relationship of physics to medicine and engineering.
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