Background: Proton therapy facilities have improved in recent years, not only providing benefits to patients but also bringing potential radiation hazards and risks. Induced radioactivity in patients is a crucial issue that remains unresolved for a long time and deserves further investigation. Therefore, this study aimed to investigate the induced radioactivity in proton therapy rooms under various treatment conditions. Materials and Methods: The Monte Carlo code FLUktuierende KAskade (FLUKA) and advanced interface Flair are employed to simulate residual dose rate distribution and different material activation levels in the proton therapy room. The simulation involved irradiating the phantom with energies of 220, 150, and 70 MeV for 2 minutes, respectively. Results and Discussion: The total specific activity of the patient exceeds that of other materials but rapidly attenuates thereafter after 2 minutes of irradiation. The residual dose rate at shutdown exceeds 2.50 μSv/hr at 30 cm from the patient’s surface in high energy conditions, and the time required to reduce it to 2.50 μSv/hr differs with different energy scenarios (10 minutes, 8 minutes, and none for scenarios A, B, and C, respectively). Conclusion: The patient plays a crucial role in identifying the radiation dose, although their importance significantly diminishes over time due to the presence of radionuclides with short half-lives. Diverse irradiation scenarios cause varying activation levels. Thus, we manage the timing of staff entry for positioning or escorting in the treatment room and introduce customized protective measures based on the specific requirements of the tumor.
목차
ABSTRACT Introduction Materials and Methods 1. Monte Carlo Simulation 2. Models and Design Results and Discussion 1. Residual Dose Rate Distribution 2. Specific Activities of Different Materials around the Patient Conclusion Conflict of Interest Acknowledgements Ethical Statement Author Contribution References
키워드
Monte Carlo SimulationFLUKAProton TherapyInduced Radioactivity
저자
Yue Yu [ School of Nuclear Science and Technology, University of Science and Technology of China, Hefei, China ]
Zhi Chen [ School of Nuclear Science and Technology, University of Science and Technology of China, Hefei, China ]
Corresponding Author
대한방사선방어학회 [Korean Association For Radiation Protection]
설립연도
1975
분야
자연과학>기타자연과학
소개
회원 상호간의 협조와 친목을 도모함으로써 방사선방어에 관한 제반연구 및 발전에 이바지함을 물론 학술의 국제교류 및 국제학술단체와의 상호협력 증진에 기여함을 목적으로 하며, 이 목적을 달성하기 위하여 다음 각 호의 사업을 한다.
1. 방사선방어에 관한 학술연구발표회 및 강연회 등의 개최
2. 학회지 및 방사선방어에 관한 학술간행물의 발행 및 배포
3. 방사선방어에 관한 학술의 국제교류 및 협력
4. 방사선방어에 관한 국제학술자료의 조사, 수집 및 번역
5. 방사선방어에 관한 조사 및 연구용역
6. 회원의 연구활동을 위한 제반협조
7. 기타 본 학회의 목적 달성에 필요한 사항
간행물
간행물명
방사선방어학회지 [Journal of Radiation Protection and Research]
간기
계간
pISSN
2508-1888
수록기간
1976~2026
등재여부
KCI 등재,SCOPUS
십진분류
KDC 559DDC 629
이 권호 내 다른 논문 / 방사선방어학회지 Vol. 50 Special Issue (ISORD-11)