Dosimetric Characteristics of Radiophotoluminescent Glass Dosimeters for Proton Beams.

IF 0.7 Q4 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Journal of Medical Physics Pub Date : 2023-07-01 Epub Date: 2023-09-18 DOI:10.4103/jmp.jmp_71_23
Sornjarod Oonsiri, Sakda Kingkaew, Mananchaya Vimolnoch, Nichakan Chatchumnan, Puntiwa Oonsiri
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Abstract

Purpose: The purpose of the study was to investigate the dosimetric characteristics of radiophotoluminescent glass dosimeters (RGDs) for pencil beam scanning proton therapy. The RGD's end-to-end testing of intensity-modulated proton therapy (IMPT) plans was also evaluated.

Materials and methods: The dosimetric characteristics of the GD-302M type glass dosimeter were studied in terms of uniformity, short-term and long-term reproducibility, stability of the magazine position readout, dose linearity in the range from 0.2 to 20 Gy, energy response in 70-220 MeV, and fading effect. The reference conditions of the spot scanning beam from the Varian ProBeam Compact system were operation at 160 MeV, a 2 cm water-equivalent depth in a solid water phantom, a 10 cm × 10 cm field size at the isocenter, and 2 Gy dose delivery. End-to-end testing of IMPT plans for the head, abdomen, and pelvis was verified using the Alderson Rando phantom. The overall uncertainty analysis was confirmed in this study.

Results: The relative response of RGDs for the uniformity test was within 0.95-1.05. The percentages of the coefficients of variation for short-term and long-term reproducibility were 1.16% and 1.50%, respectively. The dose ACE glass dosimetry reader FGD-1000 showed a stable magazine position readout. The dose was found to be linear with R2 = 0.9988. The energy response relative to 160 MeV was approximately within 4.0%. The fading effect was within 2.4%. For the end-to-end test, the difference between the treatment plan and RGD measurement was within 1.0%. The overall uncertainty of the RGD measurement for the proton beam was 4.6%, which covered all energy ranges in this study.

Conclusion: The experimental study indicates that the RGDs have the potential to be used in the dosimetry of therapeutic proton beams, including end-to-end dosimetry.

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质子束辐射光致发光玻璃剂量计的剂量学特性。
目的:研究铅笔束扫描质子治疗用放射光致发光玻璃剂量计的剂量学特性。RGD对调强质子治疗(IMPT)方案的端到端测试也进行了评估。材料与方法:研究GD-302M型玻璃剂量计的均匀性、短期重复性、长期重复性、弹匣位置读出稳定性、0.2 ~ 20 Gy剂量线性、70 ~ 220 MeV能量响应、衰减效应等方面的剂量学特性。瓦里安ProBeam Compact系统的点扫描光束参考条件为160 MeV,固体水模体中2 cm水当量深度,等心处10 cm × 10 cm场尺寸,2 Gy剂量给药。使用Alderson Rando假体对头部、腹部和骨盆的IMPT计划进行端到端测试。总体的不确定度分析在本研究中得到了证实。结果:rgd对均匀性试验的相对响应在0.95 ~ 1.05之间。短期重复性变异系数为1.16%,长期重复性变异系数为1.50%。剂量ACE玻璃剂量仪FGD-1000显示出稳定的弹匣位置读数。剂量呈线性关系,R2 = 0.9988。相对于160mev的能量响应大约在4.0%以内。退色效果在2.4%以内。对于端到端检验,治疗方案与RGD测量值之间的差异在1.0%以内。质子束RGD测量的总体不确定度为4.6%,涵盖了本研究的所有能量范围。结论:实验研究表明RGDs具有应用于治疗性质子束剂量测定的潜力,包括端到端剂量测定。
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来源期刊
Journal of Medical Physics
Journal of Medical Physics RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
1.10
自引率
11.10%
发文量
55
审稿时长
30 weeks
期刊介绍: JOURNAL OF MEDICAL PHYSICS is the official journal of Association of Medical Physicists of India (AMPI). The association has been bringing out a quarterly publication since 1976. Till the end of 1993, it was known as Medical Physics Bulletin, which then became Journal of Medical Physics. The main objective of the Journal is to serve as a vehicle of communication to highlight all aspects of the practice of medical radiation physics. The areas covered include all aspects of the application of radiation physics to biological sciences, radiotherapy, radiodiagnosis, nuclear medicine, dosimetry and radiation protection. Papers / manuscripts dealing with the aspects of physics related to cancer therapy / radiobiology also fall within the scope of the journal.
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