• Title/Summary/Keyword: ionization chamber

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Quality Assurance in Intensity Modulated Radiation Theray (세기조절방사선치료의 정도관리)

  • Kim, Sung-Kyu
    • Journal of Yeungnam Medical Science
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    • v.25 no.2
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    • pp.85-91
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    • 2008
  • Intensity-modulated radiation therapy (IMRT) is believed to be one of the best radiation treatment techniques. IMRT is able to deliver fatal doses of radiation to the tumor region with minimal exposure of critical organs. It is essential to have a comprehensive quality assurance program to assure precision and accuracy in treatment, due to the character of IMRT. We applied quality assurance technique to the Eclipse treatment planning system and sought to determine its effectiveness in patient treatment planning. An acrylic phantom, film, and an ionization chamber were used in this study.

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Large-volume and room-temperature gamma spectrometer for environmental radiation monitoring

  • Coulon, Romain;Dumazert, Jonathan;Tith, Tola;Rohee, Emmanuel;Boudergui, Karim
    • Nuclear Engineering and Technology
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    • v.49 no.7
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    • pp.1489-1494
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    • 2017
  • The use of a room-temperature gamma spectrometer is an issue in environmental radiation monitoring. To monitor radionuclides released around a nuclear power plant, suitable instruments giving fast and reliable information are required. High-pressure xenon (HPXe) chambers have range of resolution and efficiency equivalent to those of other medium resolution detectors such as those using NaI(Tl), CdZnTe, and $LaBr_3:Ce$. An HPXe chamber could be a cost-effective alternative, assuming temperature stability and reliability. The CEA LIST actively studied and developed HPXe-based technology applied for environmental monitoring. Xenon purification and conditioning was performed. The design of a 4-L HPXe detector was performed to minimize the detector capacitance and the required power supply. Simulations were done with the MCNPX2.7 particle transport code to estimate the intrinsic efficiency of the HPXe detector. A behavioral study dealing with ballistic deficits and electronic noise will be utilized to provide perspective for further analysis.

포항방사광가속기 저장링시운전시의 방사선측정

  • 이희석;김제한;홍석모;박응수;정진화
    • Proceedings of the Korean Nuclear Society Conference
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    • 1995.05b
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    • pp.899-905
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    • 1995
  • 포항방사광가속기(Pohang Llght Sousrc)의 시운전기간동안 저장링건물에서의 방사선발생량을 측정하였다. Ionization Chamber와 Moderated BF$_3$ Counter로 구성된 지역방사선감시기시스템(RMS)외에 Pocket Inonization chamber, 연속기록이 가능한 Surveymeter를 고정 또는 이동시키면서 사용하였다. 시운전기간동안 선형가속기로부터의 입사시기와 저장시기에서의 방사선방출분포 및 선량의 정도가 명확히 구별되었으며 RF Cavity나 Bump Magnet등의 오동작에 의한 방사선 발생경로를 추정해 볼 수 있었다 여기서는 저장링실험지역 등에서의 공간선량분포와 부분차폐에 따른 변화를 측정하였으며 측정결과로부터 차폐계산시 사용된 방법을 통해 역으로 각 지역의 빔손실정도를 추정하고 계산식의 타당성을 검토해 보았다.

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Development of Monitor Chamber Prototype and Basic Performance Testing (모니터 전리함 시작품 개발과 기초 성능 평가)

  • Lee, Mujin;Lim, Heuijin;Lee, Manwoo;Yi, Jungyu;Rhee, Dong Joo;Kang, Sang Koo;Jeong, Dong Hyeok
    • Progress in Medical Physics
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    • v.26 no.2
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    • pp.99-105
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    • 2015
  • The monitor chamber is a real time dosimetry device for the measurement and the control of radiation beam intensity of the linac system. The monitor chamber prototype was developed for monitoring and controlling radiation beam from the linac based radiation generator. The thin flexible printed circuit boards were used for electrodes of the two independent plane-parallel ionization chambers to minimize the attenuation of radiation beam. The dosimetric characteristics, saturation and linearity of the measured charge, were experimentally evaluated with the Co-60 gamma rays. The performance of the developed monitor chamber prototype was in an acceptable range and this study shows the possibility of the further development of the chamber with additional functions.

Determination of Quality Correction Factors for a Plane-Parallel Chamber in High Energy Electron Beams using Monte Carlo Calculation (몬테칼로 계산을 이용한 평판형 전리함의 고에너지 전자선에 대한 선질보정인자 결정)

  • Jeong, Dong-Hyeok;Lee, Jeong-Ok
    • Journal of radiological science and technology
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    • v.31 no.1
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    • pp.89-95
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    • 2008
  • The quality correction factor for used beam and qualities is strongly required for clinical dosimetry by TRS-398 protocol of IAEA. In this study the quality correction factors for a commercial plane-parallel ionization chamber in high energy electron beams were calculated by Monte Carlo code(DOSRZnrc/EGSnrc). In comparison of quality correction factor, the difference between this study and TRS-398 were within 1% in 5-20 MeV. In case of 4MeV the difference was 1.9%. As an independent method of determination of quality correction factor this study can be applied to evaluate values in the protocol or calculate the factor for a new chamber.

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Development of Monoenergetic Photon Source in the Energe Range below 100 keV by the X-ray Fluorescence Method (형광 X 선을 이용한 100 KeV 이하의 에너지 영역에서의 단색 Photon 선원개발에 관한 연구)

  • Lee, Youn-Myoung;Lee, Kun-Jai;Hah, Suck-Ho;Hwang, Sun-Tae;Lee, Kyung-Ju
    • Journal of Radiation Protection and Research
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    • v.10 no.1
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    • pp.14-28
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    • 1985
  • The development of mono energetic photon sources using $K_{\alpha}$ fluorescence X-ray of pure material was carried out in the energy range below 100 keV. The monoenergetic photons are very useful in the calibration of the radiation measuring instruments and can be produced as the $K_{\alpha}$ fluorescence X-ray by irradiating the bremsstrahlung to the thin pure metal foils called ‘radiators’. In this experiment, several radiators such as $_{47}Ag,\;_{50}Sn,\;_{68}Er,\;_{70}Yb,\;and\;_{82}Pb$ provide the wide monoenergetic photon energy ranging from 20 keV to 80 keV. By the spectrometry with HpGe LEPS, spectral purity factors which measure the monochrometicity for the $K_{\alpha}$ fluorescence X-ray, were determined as $0.64{\sim}0.94$. Dosimetry for the purpose of the determination of the exposure rate with a 600cc thin window ionization chamber, which was calibrated by the standard free-air ionization chamber, was performed. Exposure rates ranging $8.3{\sim}232.5mR/h$ was obtained according to the $K_{\alpha}$ fluorescence X-ray energy for each radiator.

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Therapeutic Proton Beam Range Measurement with EBT3 Film and Comparison with Tool for Particle Simulation

  • Lee, Nuri;Kim, Chankyu;Song, Mi Hee;Lee, Se Byeong
    • Progress in Medical Physics
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    • v.30 no.4
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    • pp.112-119
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    • 2019
  • Purpose: The advantages of ocular proton therapy are that it spares the optic nerve and delivers the minimal dose to normal surrounding tissues. In this study, it developed a solid eye phantom that enabled us to perform quality assurance (QA) to verify the dose and beam range for passive single scattering proton therapy using a single phantom. For this purpose, a new solid eye phantom with a polymethyl-methacrylate (PMMA) wedge was developed using film dosimetry and an ionization chamber. Methods: The typical beam shape used for eye treatment is approximately 3 cm in diameter and the beam range is below 5 cm. Since proton therapy has a problem with beam range uncertainty due to differences in the stopping power of normal tissue, bone, air, etc, the beam range should be confirmed before treatment. A film can be placed on the slope of the phantom to evaluate the Spread-out Bragg Peak based on the water equivalent thickness value of PMMA on the film. In addition, an ionization chamber (Pin-point, PTW 31014) can be inserted into a hole in the phantom to measure the absolute dose. Results: The eye phantom was used for independent patient-specific QA. The differences in the output and beam range between the measurement and the planned treatment were less than 1.5% and 0.1 cm, respectively. Conclusions: An eye phantom was developed and the performance was successfully validated. The phantom can be employed to verify the output and beam range for ocular proton therapy.

Quality Assurance of CORVUS Planning System for Intensity Modulated Radiation Therapy (CORVUS Planning System을 사용한 세기조절방사선치료의 정도관리에 관한 연구)

  • 김성규
    • Progress in Medical Physics
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    • v.15 no.1
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    • pp.9-16
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    • 2004
  • The intensity modulated radiation therapy (IMRT) is believed to be on of the best treatment techniques for the goal of radiation therapy: to irradiate fatal dose to tumor region while minimizing dose to critical organs. It is essential to have comprehensive quality assurance program to assure the precision and the accuracy of the treatment due to the characteristic of the IMRT. The quality assurance technique for the Corvus treatment planning system was developed and its effectiveness was tested with the treatment planning of H&N region. Acrylic phantom, film and ionization chamber were used for this study, the discrepancy between the treatment planning and the film measurements showed 0.03 cm and 0.28 cm for the 90% of isodose line in each directions. Dose measurements showed 1% and 1.2% differences for ionization chamber and TLD, respectively. This concluded that the system can be used for clinic.

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