Independent verification system for intracavitary brachytherapy based on a reference plan and statistical model.

IF 1.9 4区 医学 Q2 BIOLOGY
Yuichi Akino, Fumiaki Isohashi, Takehiro Arimura, Shinichi Inoue, Hiroya Shiomi, Kazuhiko Hayashi, Shotaro Tatekawa, Keisuke Tamari, Takero Hirata, Masaki Nakai, Shinichi Shimizu, Kazuhiko Ogawa
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Abstract

High dose rate (HDR) intracavitary brachytherapy (ICBT) with a remote afterloading system plays a vital role in the treatment of cervical cancer. We aimed to develop a new verification system for ICBT for cervical cancer and evaluate the feasibility for clinical plans (PlanClin) generated for different remote afterloaders, applicators and treatment techniques. In total, 517 PlansClin of patients were treated with Elekta 192Ir microSelectron HDR v2r. Reference plans (PlanRef) were generated for the ICBT applicators. An equation to predict total dwell time (Tdwell) of PlanClin was generated by evaluating the relationship between the volume receiving 100% of the prescribed dose (V100%) and the Tdwell. We also developed software to detect human errors in PlanClin by comparing parameters, including applicator and reference point geometries, dwell position and weight patterns and reference point dose, with those of PlanRef. Feasibility was evaluated for 83 PlanClin cases treated with the Elekta Flexitron remote afterloader and six ICBT plans with extra catheters (hybrid BT). The linear fitting function showed good agreement with the correlation between V100% and Tdwell. The developed equation accurately estimated the Tdwell of the PlanClin treated with the Flexitron with an accuracy of 0.26 ± 0.49%. Our system successfully detected intentional human errors including incorrect channel mapping, applicator tip offset, incorrect plan templates, an applicator digitization model and incorrect reference points. A verification system based on PlanRef and a statistical approach is feasible for the new remote afterloaders, applicators and hybrid BT techniques. This system contributes to the implementation of safe treatments.

基于参考计划和统计模型的腔内近距离治疗独立验证系统。
高剂量率(HDR)腔内近距离放射治疗(ICBT)在宫颈癌治疗中起着至关重要的作用。我们的目标是开发一个新的宫颈癌ICBT验证系统,并评估为不同的远程后载器、涂抹器和治疗技术生成的临床计划(PlanClin)的可行性。总共有517例PlansClin患者接受了Elekta 192Ir microSelectron HDR v2r治疗。为ICBT应用程序生成参考计划(PlanRef)。通过评估接受100%规定剂量的体积(V100%)与Tdwell之间的关系,得到planclin1总停留时间(Tdwell)的预测方程。我们还开发了一款软件,通过比较PlanRef的施药器和参考点几何形状、驻留位置和重量模式以及参考点剂量等参数,来检测PlanClin中的人为错误。对83例PlanClin患者采用Elekta Flexitron远程后置器和6种ICBT方案(混合BT)进行可行性评估。线性拟合函数与V100%与Tdwell的相关性吻合较好。建立的方程准确地估计了Flexitron处理PlanClin的Tdwell,精度为0.26±0.49%。我们的系统成功地检测了人为错误,包括不正确的通道映射、涂抹器尖端偏移、不正确的平面模板、涂抹器数字化模型和不正确的参考点。基于PlanRef和统计方法的验证系统对新型远程后装载机、施药器和混合BT技术是可行的。这一系统有助于实施安全治疗。
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
CiteScore
3.60
自引率
5.00%
发文量
86
审稿时长
4-8 weeks
期刊介绍: The Journal of Radiation Research (JRR) is an official journal of The Japanese Radiation Research Society (JRRS), and the Japanese Society for Radiation Oncology (JASTRO). Since its launch in 1960 as the official journal of the JRRS, the journal has published scientific articles in radiation science in biology, chemistry, physics, epidemiology, and environmental sciences. JRR broadened its scope to include oncology in 2009, when JASTRO partnered with the JRRS to publish the journal. Articles considered fall into two broad categories: Oncology & Medicine - including all aspects of research with patients that impacts on the treatment of cancer using radiation. Papers which cover related radiation therapies, radiation dosimetry, and those describing the basis for treatment methods including techniques, are also welcomed. Clinical case reports are not acceptable. Radiation Research - basic science studies of radiation effects on livings in the area of physics, chemistry, biology, epidemiology and environmental sciences. Please be advised that JRR does not accept any papers of pure physics or chemistry. The journal is bimonthly, and is edited and published by the JRR Editorial Committee.
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