Dosimetry Evaluation of Treatment Planning Systems in Patient-Specific 3D Printed Anthropomorphic Phantom for Breast Cancer after Mastectomy using a Single-Beam 3D-CRT Technique for Megavoltage Electron Radiation Therapy.

Endarko Endarko, Siti Aisyah, Aditya Prayugo Hariyanto, Mohammad Haekal, Nandia Kavilani, Ahmad Syafi'i
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Abstract

Background: The patient-specific 3D printed anthropomorphic phantom is used for breast cancer after mastectomy developed by the laboratory of medical physics and biophysics, Department of Physics, Institut Teknologi Sepuluh Nopember, Indonesia. This phantom is applied to simulate and measure the radiation interactions occurring in the human body either using the treatment planning system (TPS) or direct measurement with external beam therapy (EBT) 3 film.

Objective: This study aimed to provide dose measurements in the patient-specific 3D printed anthropomorphic phantom using a TPS and direct measurements using single-beam three-dimensional conformal radiation therapy (3DCRT) technique with electron energy of 6 MeV.

Material and methods: In this experimental study, the patient-specific 3D printed anthropomorphic phantom was used for post-mastectomy radiation therapy. TPS on the phantom was conducted using a 3D-CRT technique with RayPlan 9A software. The single-beam radiation was delivered to the phantom with an angle perpendicular to the breast plane at 337.3° at 6 MeV with a total prescribed dose of 5000 cGy/25 fractions with 200 cGy per fraction.

Results: The doses at planning target volume (PTV) and right lung confirmed a non-significant difference both for TPS and direct measurement with P-values of 0.074 and 0.143, respectively. The dose at the spinal cord showed statistically significant differences with a P-value of 0.002. The result presented a similar skin dose value using either TPS or direct measurement.

Conclusion: The patient-specific 3D printed anthropomorphic phantom for breast cancer after mastectomy on the right side has good potential as an alternative to the evaluation of dosimetry for radiation therapy.

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使用单束3D- crt技术进行巨压电子放射治疗乳腺癌乳房切除术后患者特异性3D打印拟人化幻影治疗计划系统的剂量学评估。
背景:由印度尼西亚Sepuluh理工学院物理系医学物理与生物物理实验室开发的患者特异性3D打印拟人化假体用于乳房切除术后的乳腺癌。该模型用于模拟和测量人体中发生的辐射相互作用,无论是使用治疗计划系统(TPS)还是使用外束治疗(EBT) 3膜直接测量。目的:利用TPS和电子能量为6 MeV的单束三维适形放射治疗(3DCRT)技术直接测量患者特异性3D打印拟人体的剂量。材料和方法:在本实验研究中,使用患者特异性3D打印拟人体模进行乳房切除术后放射治疗。采用3D-CRT技术和RayPlan 9A软件对假体进行TPS。单束辐射以垂直于乳房平面的337.3°角在6mev下照射到幻体,总规定剂量为5000 cGy/25个分数,每分数200 cGy。结果:计划靶体积剂量(PTV)和右肺剂量(TPS)与直接测量的p值分别为0.074和0.143,差异无统计学意义。脊髓剂量差异有统计学意义,p值为0.002。使用TPS或直接测量结果显示皮肤剂量值相似。结论:乳腺癌右侧乳腺切除术后患者特异性3D打印拟人假体具有替代放射治疗剂量学评价的良好潜力。
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来源期刊
Journal of Biomedical Physics and Engineering
Journal of Biomedical Physics and Engineering Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
2.90
自引率
0.00%
发文量
64
审稿时长
10 weeks
期刊介绍: The Journal of Biomedical Physics and Engineering (JBPE) is a bimonthly peer-reviewed English-language journal that publishes high-quality basic sciences and clinical research (experimental or theoretical) broadly concerned with the relationship of physics to medicine and engineering.
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