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在内部研发的具有成本效益的异质性胸部体模上,采用调强放射治疗技术,通过分析各向异性算法和Acuros XB算法对绝对剂量点进行验证。

Validation of absolute point dosimetry by the analytical anisotropic algorithm and Acuros XB algorithm employing intensity-modulated radiotherapy technique on an in-house develop cost-effective heterogeneous thorax phantom.

作者信息

Bagdare Priyusha, Dubey Swati, Ghosh Sanjay

机构信息

School of Studies in Physics, Vikram University, Ujjain, Madhya Pradesh, India.

出版信息

J Cancer Res Ther. 2021 Jul-Sep;17(4):859-864. doi: 10.4103/jcrt.JCRT_1072_19.

Abstract

INTRODUCTION

Dose validation inside the human body needs a medium which can simulate the actual heterogeneities of a specific body site. The aim of the present work is to study the properties of a cost-effective heterogeneous thorax phantom (HTP) developed in-house by the author and its application for the evaluation of patient-specific absolute point dosimetry by employing analytic anisotropic algorithm (AAA) and Acuros XB (AXB) algorithm.

MATERIALS AND METHODS

HTP was made from the dust of porous pinewood, rib cage, and honeybee's wax. Density and central axis isodose depth distribution was measured on computed tomography images of actual patient and on HTP. Absolute point dose verification of 35 patients was done using AAA and AXB algorithm. The difference in the calculated dose by AAA and AXB was compared using the Wilcoxon signed-rank test.

RESULTS

Density distribution and central axis depth dose inside the HTP compare well with that of an actual patient. The mean percentage variation between the planned and the measured doses inside the HTP was found to be 4.85 (standard deviation [SD] = 3.38) and 1.3 (SD = 2.93), respectively, using AAA and AXB algorithm. The difference in the measured dose and the planned dose was found to be significant for AAA with the significance level of 0.01 (p-value < 0.00001), whereas it was found to be insignificant (p-value < 0.00001) for AXB.

CONCLUSION

The results of this study showed that the HTP is resembled with the human thorax in terms of its heterogeneities and radiological properties and can be used for pretreatment plan verification.

摘要

引言

人体内部的剂量验证需要一种能够模拟特定身体部位实际异质性的介质。本研究的目的是研究作者自行开发的一种经济高效的异质胸部体模(HTP)的特性,及其通过采用解析各向异性算法(AAA)和Acuros XB(AXB)算法用于评估患者特定绝对点剂量测定的应用。

材料与方法

HTP由多孔松木粉尘、肋骨和蜂蜡制成。在实际患者的计算机断层扫描图像和HTP上测量密度和中心轴等剂量深度分布。使用AAA和AXB算法对35例患者进行绝对点剂量验证。使用Wilcoxon符号秩检验比较AAA和AXB计算剂量的差异。

结果

HTP内部的密度分布和中心轴深度剂量与实际患者的情况比较吻合。使用AAA和AXB算法时,HTP内计划剂量与测量剂量之间的平均百分比变化分别为4.85(标准差[SD]=3.38)和1.3(SD=2.93)。发现AAA测量剂量与计划剂量之间的差异具有显著性,显著性水平为0.01(p值<0.00001),而AXB的差异不显著(p值<0.00001)。

结论

本研究结果表明,HTP在异质性和放射学特性方面与人体胸部相似,可用于预处理计划验证。

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