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Development of a patient-specific 3D dose evaluation program for QA in radiation therapy

机译:针对放射治疗质量保证开发针对患者的3D剂量评估程序

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We present preliminary results for a 3-dimensional dose evaluation software system ( (P) DRESS, patient-specific 3-dimensional dose real evaluation system). Scanned computed tomography (CT) images obtained by using dosimetry were transferred to the radiation treatment planning system (ECLIPSE, VARIAN, Palo Alto, CA) where the intensity modulated radiation therapy (IMRT) nasopharynx plan was designed. We used a 10 MV photon beam (CLiX, VARIAN, Palo Alto, CA) to deliver the nasopharynx treatment plan. After irradiation, the TENOMAG dosimeter was scanned using a VISTA (TM) scanner. The scanned data were reconstructed using VistaRecon software to obtain a 3D dose distribution of the optical density. An optical-CT scanner was used to readout the dose distribution in the gel dosimeter. Moreover, we developed the (P) DRESS by using Flatform, which were developed by our group, to display the 3D dose distribution by loading the DICOM RT data which are exported from the radiotherapy treatment plan (RTP) and the optical-CT reconstructed VFF file, into the independent (P) DRESS with an ioniz ation chamber and EBT film was used to compare the dose distribution calculated from the RTP with that measured by using a gel dosimeter. The agreement between the normalized EBT, the gel dosimeter and RTP data was evaluated using both qualitative and quantitative methods, such as the isodose distribution, dose difference, point value, and profile. The profiles showed good agreement between the RTP data and the gel dosimeter data, and the precision of the dose distribution was within +/- 3%. The results from this study showed significantly discrepancies between the dose distribution calculated from the treatment plan and the dose distribution measured by a TENOMAG gel and by scanning with an optical CT scanner. The 3D dose evaluation software system ( (P) DRESS, patient specific dose real evaluation system), which were developed in this study evaluates the accuracies of the three-dimensional dose distributions. Further applications of the system utility are expected to result from future studies.
机译:我们介绍了3维剂量评估软件系统((P)DRESS,针对患者的3维剂量真实评估系统)的初步结果。使用剂量测定法获得的扫描计算机断层扫描(CT)图像被转移到放射治疗计划系统(ECLIPSE,VARIAN,帕洛阿尔托,加利福尼亚),在该系统中设计了强度调制放射治疗(IMRT)鼻咽计划。我们使用了10 MV光子束(CLiX,VARIAN,Palo Alto,CA)来提供鼻咽治疗计划。辐照后,使用VISTA(TM)扫描仪扫描TENOMAG剂量计。使用VistaRecon软件重建扫描数据,以获得光密度的3D剂量分布。使用光学CT扫描仪读出凝胶剂量计中的剂量分布。此外,我们使用小组开发的Flatform开发了(P)DRESS,通过加载从放射治疗计划(RTP)和光学CT重建的VFF导出的DICOM RT数据来显示3D剂量分布将文件放入带有电离室的独立(P)DRESS中,并使用EBT膜将根据RTP计算的剂量分布与使用凝胶剂量计测量的剂量分布进行比较。使用定性和定量方法(如等剂量分布,剂量差异,点值和分布图)评估归一化EBT,凝胶剂量计和RTP数据之间的一致性。曲线显示RTP数据和凝胶剂量计数据之间的一致性好,剂量分布的精度在+/- 3%之内。这项研究的结果表明,根据治疗计划计算出的剂量分布与通过TENOMAG凝胶以及通过光学CT扫描仪测量的剂量分布之间存在显着差异。在本研究中开发的3D剂量评估软件系统((P)DRESS,患者特定剂量实际评估系统)评估了三维剂量分布的准确性。该系统实用程序的进一步应用有望从未来的研究中获得。

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