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异生物软件:使用线性二次线性模型从物理剂量转换得到的生物剂量分布和生物剂量体积直方图。

Isobio software: biological dose distribution and biological dose volume histogram from physical dose conversion using linear-quadratic-linear model.

作者信息

Jaikuna Tanwiwat, Khadsiri Phatchareewan, Chawapun Nisa, Saekho Suwit, Tharavichitkul Ekkasit

机构信息

Medical Physics Master Degree Program, Department of Radiology, Faculty of Medicine.

Division of Therapeutic Radiology and Oncology, Faculty of Medicine.

出版信息

J Contemp Brachytherapy. 2017 Feb;9(1):44-51. doi: 10.5114/jcb.2017.66082. Epub 2017 Feb 20.

Abstract

PURPOSE

To develop an in-house software program that is able to calculate and generate the biological dose distribution and biological dose volume histogram by physical dose conversion using the linear-quadratic-linear (LQL) model.

MATERIAL AND METHODS

The Isobio software was developed using MATLAB version 2014b to calculate and generate the biological dose distribution and biological dose volume histograms. The physical dose from each voxel in treatment planning was extracted through Computational Environment for Radiotherapy Research (CERR), and the accuracy was verified by the differentiation between the dose volume histogram from CERR and the treatment planning system. An equivalent dose in 2 Gy fraction (EQD) was calculated using biological effective dose (BED) based on the LQL model. The software calculation and the manual calculation were compared for EQD verification with pair -test statistical analysis using IBM SPSS Statistics version 22 (64-bit).

RESULTS

Two and three-dimensional biological dose distribution and biological dose volume histogram were displayed correctly by the Isobio software. Different physical doses were found between CERR and treatment planning system (TPS) in Oncentra, with 3.33% in high-risk clinical target volume (HR-CTV) determined by D, 0.56% in the bladder, 1.74% in the rectum when determined by D, and less than 1% in Pinnacle. The difference in the EQD between the software calculation and the manual calculation was not significantly different with 0.00% at -values 0.820, 0.095, and 0.593 for external beam radiation therapy (EBRT) and 0.240, 0.320, and 0.849 for brachytherapy (BT) in HR-CTV, bladder, and rectum, respectively.

CONCLUSIONS

The Isobio software is a feasible tool to generate the biological dose distribution and biological dose volume histogram for treatment plan evaluation in both EBRT and BT.

摘要

目的

开发一种内部软件程序,该程序能够通过使用线性 - 二次 - 线性(LQL)模型进行物理剂量转换来计算并生成生物剂量分布和生物剂量体积直方图。

材料与方法

使用MATLAB 2014b版本开发了Isobio软件,用于计算并生成生物剂量分布和生物剂量体积直方图。通过放射治疗研究计算环境(CERR)提取治疗计划中每个体素的物理剂量,并通过比较CERR的剂量体积直方图与治疗计划系统来验证其准确性。基于LQL模型,使用生物有效剂量(BED)计算2 Gy分次等效剂量(EQD)。使用IBM SPSS Statistics 22(64位)通过配对检验统计分析比较软件计算和手动计算的EQD以进行验证。

结果

Isobio软件正确显示了二维和三维生物剂量分布以及生物剂量体积直方图。在Oncentra中,CERR和治疗计划系统(TPS)之间发现不同的物理剂量,高危临床靶区(HR - CTV)中由D确定的差异为3.33%,膀胱中为0.56%,直肠中由D确定时为1.74%,在Pinnacle中小于1%。在HR - CTV、膀胱和直肠中,软件计算和手动计算的EQD差异在外部束放射治疗(EBRT)中分别为0.00%,P值为0.820、0.095和0.593,在近距离放射治疗(BT)中分别为0.240、0.320和0.849,差异均无统计学意义。

结论

Isobio软件是一种可行的工具,可用于生成生物剂量分布和生物剂量体积直方图,以评估EBRT和BT的治疗计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12dd/5346611/832f332e4837/JCB-9-29512-g001.jpg

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