• 제목/요약/키워드: Proton beam monitoring

검색결과 7건 처리시간 0.022초

A Pilot Study of the Scanning Beam Quality Assurance Using Machine Log Files in Proton Beam Therapy

  • Chung, Kwangzoo
    • 한국의학물리학회지:의학물리
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    • 제28권3호
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    • pp.129-133
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    • 2017
  • The machine log files recorded by a scanning control unit in proton beam therapy system have been studied to be used as a quality assurance method of scanning beam deliveries. The accuracy of the data in the log files have been evaluated with a standard calibration beam scan pattern. The proton beam scan pattern has been delivered on a gafchromic film located at the isocenter plane of the proton beam treatment nozzle and found to agree within ${\pm}1.0mm$. The machine data accumulated for the scanning beam proton therapy of five different cases have been analyzed using a statistical method to estimate any systematic error in the data. The high-precision scanning beam log files in line scanning proton therapy system have been validated to be used for off-line scanning beam monitoring and thus as a patient-specific quality assurance method. The use of the machine log files for patient-specific quality assurance would simplify the quality assurance procedure with accurate scanning beam data.

Feasibility Test of Flat-Type Faraday Cup for Ultrahigh-Dose-Rate Transmission Proton Beam Therapy

  • Sang-il Pak;Sungkoo Cho;Seohyeon An;Seonghoon Jeong;Dongho Shin;Youngkyung Lim;Jong Hwi Jeong;Haksoo Kim;Se Byeong Lee
    • 한국의학물리학회지:의학물리
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    • 제33권4호
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    • pp.108-113
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    • 2022
  • Purpose: Proton therapy has been used for optimal cancer treatment by adapting its Bragg-peak characteristics. Recently, a tissue-sparing effect was introduced in ultrahigh-dose-rate (FLASH) radiation; the high-energy transmission proton beam is considered in proton FLASH therapy. In measuring high-energy/ultrahigh-dose-rate proton beam, Faraday Cup is considered as a dose-rate-independent measurement device, which has been widely studied. In this paper, the feasibility of the simply designed Faraday Cup (Poor Man's Faraday Cup, PMFC) for transmission proton FLASH therapy is investigated. Methods: In general, Faraday cups were used in the measurement of charged particles. The simply designed Faraday Cup and Advanced Markus ion chamber were used for high-energy proton beam measurement in this study. Results: The PMFC shows an acceptable performance, including accuracy in general dosimetric tests. The PMFC has a linear response to the dose and dose rate. The proton fluence was decreased with the increase of depth until the depth was near the proton beam range. Regarding secondary particles backscatter from PMFC, the effect was negligible. Conclusions: In this study, we performed an experiment to investigate the feasibility of PMFC for measuring high-energy proton beams. The PMFC can be used as a beam stopper and secondary monitoring system for transmission proton beam FLASH therapy.

Improvement of Statistics in Proton Beam Range Measurement by Merging Prompt Gamma Distributions: A Preliminary Study

  • Kim, Sung Hun;Park, Jong Hoon;Ku, Youngmo;Lee, Hyun Su;Kim, Young-su;Kim, Chan Hyeong;Jeong, Jong Hwi
    • Journal of Radiation Protection and Research
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    • 제44권1호
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    • pp.1-7
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    • 2019
  • Background: To monitor proton beam in proton therapy, prompt gamma imaging systems are being developed by several research groups, and these systems are expected to improve the quality of the treatment and the patient safety. To apply the prompt gamma imaging systems into spot scanning proton therapy, the systems should be able to monitor the proton beam range of a spot with a small number of protons ( <$10^8$ protons), which is quite often not the case due to insufficient prompt gamma statistics. Materials and Methods: In the present study, we propose to improve prompt gamma statistics by merging the prompt gamma distributions of several individual spots into a new distribution. This proposal was tested by Geant4 Monte Carlo simulations for a multi-slit prompt gamma camera which has been developed to measure the proton beam range in the patient. Results and Discussion: The results show that the proposed method clearly enhance the statistical precision of beam range measurement. The accuracy of beam range verification is improved, within ~1.4 mm error, which is not achievable before applying the developed method. Conclusion: In this study, we tried to improve the statistics of the prompt gamma statistics by merging the prompt gamma distributions of multiple spots, and it was found that the merged distribution provided sufficient prompt gamma statistics and the proton beam range was determined accurately.

RESEARCH ON LASER-ACCELERATED PROTON GENERATION AT KAERI

  • PARK SEONG HEE;LEE KITAE;CHA YOUNG HO;JEONG YOUNG UK;BAIK SUNG HOON;YOO BYUNG DUK
    • Nuclear Engineering and Technology
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    • 제37권3호
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    • pp.279-286
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    • 2005
  • A prototype of a relativistic proton generation system, based on laser-induced plasma interaction, has been designed and fabricated. The system is composed of three major parts: a fs TW laser; a target chamber, including targets and controls; and a diagnostic system for charged particles and lasers. An Offner-type pulse stretcher for chirped pulse amplification (CPA) and eight pass pre-amplifier are installed. The main amplifier will be integrated with a new pumping laser. The design values of the laser at the first stage are 1 TW in power and 50 fs in pulse duration. We expect to generate protons with their maximum energy of approximately 3 MeV and the flux of at least $10^6$ per pulse using a 10 $\mu$m Al target. A prototype target chamber with eight 8-inch flanges, including target mounts, has been designed and fabricated. For laser diagnostics, an adaptive optics based on the Shack-Hartmann type, beam monitoring, and alignment system are all under development. For a charged particle, CR-39 detectors, a Thomson parabola spectrometer, and Si charged-particle detectors will be used for the density profile and energy spectrum. In this paper, we present the preliminary design for laser-induced proton generation. We also present plans for future work, as well as theoretical simulations.

CCD기반의 방사선치료 중 실시간 자동 환자 위치보정 시스템 개발: 타당성 연구 (The Development of Real Time Automatic Patient Position Correction System during the Radiation Therapy Based on CCD: A Feasibility Study)

  • 신동호;정광주;김미영;손재만;윤명근;임영경;이세병
    • 한국의학물리학회지:의학물리
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    • 제24권3호
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    • pp.191-197
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    • 2013
  • 방사선 치료 시 방사선이 조사되는 동안 환자의 움직임을 모니터링하는 것은 치료의 성공을 결정 하는 중요한 요인이다. 따라서 방사선이 조사되는 동안 환자의 움직임을 실시간으로 감시하고 움직인 치료위치를 자동으로 보정 할 수 있는 시스템을 개발 하였다. 원점을 중심으로 직교하게 위치한 2개의 CCD 카메라를 이용하여 3차원적 환자의 위치를 확인 하고, 틀 맞춘 상호교차 비교법(normalized cross-correlation method)을 이용한 영상 본 맞춤(image pattern matching) 방법을 이용한 환자위치 모니터링 시스템을 개발하였다. CCD카메라로부터 촬영된 영상을 컴퓨터로 전달하여 위치 변화를 정량적으로 분석 하여 빔 켜고 끔(beam on and off)를 위한 방아쇠신호(trigger signal)를 발생시키고, 이동치료대(moving couch)의 모터를 제어할 수 있는 시스템을 개발하였다. 이 시스템은 0.5 mm 이하의 분해능으로 환자의 위치를 자동으로 보정할 수 있었다.

빔 출력 특성 개선을 위한 빔 프로파일 모니터링 시스템 개발 (The Development of a beam profile monitoring system for improving the beam output characteristics)

  • 안영준;허민구;양승대;신대섭;이동훈
    • 한국정보통신학회논문지
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    • 제19권11호
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    • pp.2689-2696
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    • 2015
  • 방사선 진단에 사용되는 방사성동위원소 중 사이클로트론을 이용해 생산되는 방사성동위원소는 사이클로트론에서 인출된 양성자 빔이 타겟에 조사될 때 빔의 크기와 모양, 조사되는 위치에서 빔 균일 정도에 따라 생산 수율에 영향을 받는다. 이에 본 논문에서는 사이클로트론 빔 라인에서 빔의 단면을 측정할 수 있는 BPM(Beam Profile Monitor)장치를 개발하였다. LabView로 BPM장치를 원격 제어할 수 있도록 구성하였으며 BPM 프로그램을 이용하여 X축과 Y축으로 텅스텐 와이어를 스캔하면서 얻은 빔의 수치 정보를 2차원 그래프와 3차원 빔 분포 그래프로 표시하여 해석을 쉽게 모니터링 할 수 있도록 하였다. 빔을 측정하는 데 걸리는 시간은 스텝 모터 구동 속도가 2000pps일 때 37초가 걸린다는 것을 확인 할 수 있었다. 측정된 빔 분포정보를 기반으로 빔 재조정을 통해 빔 분포를 최적화함으로써 방사성동위원소 생산 수율을 극대화 시킬 수 있고 공급 안정화에도 기여하리라 본다.