• 제목/요약/키워드: Dose Calculation

검색결과 522건 처리시간 0.052초

Derivation of a new dose constraint applicable to radioactive discharges from Korean nuclear power plants through retrospective dose assessment

  • Kim, Soyun;Cheong, Jae Hak
    • Nuclear Engineering and Technology
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    • 제54권10호
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    • pp.3660-3671
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    • 2022
  • A new methodology to derive a dose constraint for radioactive effluent from a unit of nuclear power plant (NPP) through retrospective assessment was developed to reflect operational flexibility in line with international standards. The new dose constraint can retain the safety margin between the offsite dose and the past dose constraints. As case studies, the new approach was applied to 24 Korean NPPs to address the limitations of the existing seven dose constraints that do not fully comply with current international radiation protection standards. Therefore, an effective dose constraint for Korean NPPs was proposed as no less than 0.15 mSv/y, which is comparable to the international practices and previous studies (0.05-0.3 mSv/y). Although the lower bound of the equivalent dose constraint was calculated as 0.17 mSv/y, it is not proposed in this study since the compliance with the derived effective dose constraint can prevent accompanied equivalent doses to any organs from exceeding equivalent dose limits. The new framework and the case studies are expected to contribute toward and support the revision of existing dose constraints for radioactive effluent from NPPs, ensuring better compliance with the current international safety standards as well as reflect the operational flexibility in practice.

Organ dose conversion coefficients in CT scans for Korean adult males and females

  • Lee, Choonsik;Won, Tristan;Yeom, Yeon Soo;Griffin, Keith;Lee, Choonik;Kim, Kwang Pyo
    • Nuclear Engineering and Technology
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    • 제54권2호
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    • pp.681-688
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    • 2022
  • Dose monitoring in CT patients requires accurate dose estimation but most of the CT dose calculation tools are based on Caucasian computational phantoms. We established a library of organ dose conversion coefficients for Korean adults by using four Korean adult male and two female voxel phantoms combined with Monte Carlo simulation techniques. We calculated organ dose conversion coefficients for head, chest, abdomen and pelvis, and chest-abdomen-pelvis scans, and compared the results with the existing data calculated from Caucasian phantoms. We derived representative organ doses for Korean adults using Korean CT dose surveys combined with the dose conversion coefficients. The organ dose conversion coefficients from the Korean adult phantoms were slightly greater than those of the ICRP reference phantoms: up to 13% for the brain doses in head scans and up to 10% for the dose to the small intestine wall in abdominal scans. We derived Korean representative doses to major organs in head, chest, and AP scans using mean CTDIvol values extracted from the Korean nationwide surveys conducted in 2008 and 2017. The Korean-specific organ dose conversion coefficients should be useful to readily estimate organ absorbed doses for Korean adult male and female patients undergoing CT scans.

177Lu-EDTMP radiation absorbed dose evaluation in man based on biodistribution data in Wistar rats

  • Reza Bagheri
    • Nuclear Engineering and Technology
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    • 제55권1호
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    • pp.254-260
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    • 2023
  • Skeletal metastases are common in patients suffering from various primary cancers. Radiopharmaceuticals are an effective option for bone pain palliation. In this work, the radiation absorbed dose of 177Lu-EDTMP radiopharmaceutical was estimated for adult man based on biodistribution data in Wistar rats. The MIRD dose calculation method and the Sparks and Aydogan methodology were applied. The results shows that about 46% of injected activity is cumulated on the surface of the trabecular and cortical bones. Radiation absorbed doses of red bone marrow and osteogenic cells were estimated to about 1.1 and 6.2 mGy/MBq, respectively. The maximum administrated activity was obtained 27 MBq/kg of body weight with an effective dose of 0.23 mSv/MBq. The results were compared with other available data from literature. This study indicated that 177Lu-EDTMP provides therapeutic efficacy for achieving bone pain palliation with low undesired dose to other normal organs.

Evaluation of absorbed dose in monkey and mouse using 18F-FDG PET and CT density information

  • Kim, Wook;Lee, Yong Jin;Park, Yong Sung;Cho, Doo-Wan;Lee, Hong-Soo;Han, Su-Cheol;Kang, Joo Hyun;Woo, Sang-Keun
    • 대한방사성의약품학회지
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    • 제3권1호
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    • pp.18-24
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    • 2017
  • Patient-specific image-based internal dosimetry involves using the patient's individual anatomy and spatial distribution of radioactivity over time to obtain an absorbed dose calculation. Individual absorbed dose was calculated by accumulated activity multiply S-value of each organs. The aim of this study was to calculate the S-values using Monte Carlo simulation in monkey and mouse and evaluation of absorbed dose in each organ. Self-irradiation S-value of monkey heart self-irradiation was 3.15E-03 mGy-g/MBq-s, lung self-irradiation was 8.94E-04 mGy-g/MBq-s and liver self-irradiation S-value was 2.23E-03 mGy-g/MBq-s. Mouse heart self-irradiation S-value was 1.95E-01 mGy-g/MBq-s, lung was 9.59E-02 mGy-g/MBq-s, and liver was 1.40E-03 mGy-g/MBq-s. The results of this study show that the calculation protocol of image based individual absorbed dose of each organ using Monte Carlo simulation. Therefore, this study may be applied to calculate human specific absorbed dose.

6MV X-선에 의한 폐조직의 심부선량변화와 임상응용 (Dose Calculation of Heterogeneous Lung Tissue on 6MV X-ray Therapy)

  • 이경자;장승희;추성실
    • 한국의학물리학회지:의학물리
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    • 제9권4호
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    • pp.247-257
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    • 1998
  • 방사선치료에서 악성종양과 주위건강조직에 대한 정확한 선량분포를 파악하기 위하여는 신체내 불균질 조직에 의한 선량변화의 측정이 중요하며 그중에서도 밀도가 낮고 체적이 비교적 큰 폐조직에 대한 선량분포의 변화는 방사선 치료에서 간과할 수 없는 중요한 요인의 하나이다. 저자들은 6메가볼트의 엑스선으로 흉곽내에 위치한 종양에 정확한 선량을 투여하기 위하여 조직등가팬텀을 제작하고 열형광 선량계와 필름선량측정 방법으로 흉곽내의 방사선 분포변화를 실측 하였으며 컴퓨터화하기 위한 수학적 실험식올 유도하고 이를 이론식과 비교 검토한 결과 거의 일치함을 보였다. 실험을 통하여 일문조사면 또는 다문조사면에서 폐조직은 연조직에 비하여 1cm 당 약4%의 선량 증가를 보였으며 식도부위의 회전조사에서는 균질 연조직의 등량곡선보다 15% 미만의 선량 격차가 나타났고 폐부위의 회전조사에서는 회전각도에 따라 20% 내외의 큰오차를 나타내었다. 폐암등 흉부내 종양치료에서는 폐조직 밀도에 의한 방사선 투과 및 산란으로 선량과 선량분포의 오차가 5%-20%에 이르므로 반드시 선량을 보상하여야 하며 선량분포도를 작성 평가함으로서 방사선 임상치료에 큰효과를 얻을 수 있었다.

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Three-dimensional dose reconstruction-based pretreatment dosimetric verification in volumetric modulated arc therapy for prostate cancer

  • Jeong, Yuri;Oh, Jeong Geun;Kang, Jeong Ku;Moon, Sun Rock;Lee, Kang Kyoo
    • Radiation Oncology Journal
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    • 제38권1호
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    • pp.60-67
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    • 2020
  • Purpose: We performed three-dimensional (3D) dose reconstruction-based pretreatment verification to evaluate gamma analysis acceptance criteria in volumetric modulated arc therapy (VMAT) for prostate cancer. Materials and Methods: Pretreatment verification for 28 VMAT plans for prostate cancer was performed using the COMPASS system with a dolphin detector. The 3D reconstructed dose distribution of the treatment planning system calculation (TC) was compared with that of COMPASS independent calculation (CC) and COMPASS reconstruction from the dolphin detector measurement (CR). Gamma results (gamma failure rate and average gamma value [GFR and γAvg]) and dose-volume histogram (DVH) deviations, 98%, 2% and mean dose-volume difference (DD98%, DD2% and DDmean), were evaluated. Gamma analyses were performed with two acceptance criteria, 2%/2 mm and 3%/3 mm. Results: The GFR in 2%/2 mm criteria were less than 8%, and those in 3%/3 mm criteria were less than 1% for all structures in comparisons between TC, CC, and CR. In the comparison between TC and CR, GFR and γAvg in 2%/2 mm criteria were significantly higher than those in 3%/3 mm criteria. The DVH deviations were within 2%, except for DDmean (%) for rectum and bladder. Conclusions: The 3%/3 mm criteria were not strict enough to identify any discrepancies between planned and measured doses, and DVH deviations were less than 2% in most parameters. Therefore, gamma criteria of 2%/2 mm and DVH related parameters could be a useful tool for pretreatment verification for VMAT in prostate cancer.

고선량율 관내 방사선치료를 위한 종양선량분포의 최적화에 대한 연구 (Optimization of Dose Distribution for High Dose Rate Intraluminal Therapy)

  • 추성실;김귀언;노준규
    • Radiation Oncology Journal
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    • 제12권2호
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    • pp.243-252
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    • 1994
  • 원격조종 아프터로딩에 의한 고선량율 관내삽입조사는 체내 발생된 종양에 방사선원을 근접시켜 치료하는 방사선요법으로서 신속한 선량계산과 선량의 정확성 및 다양한 모양의 최적선량분포가 요구된다. 저자들은 크기가 작고 선량율이 높은 고선량율의 방사성동위원소에 대한 정확한 조사선량과 최적선량분포를 얻기 위하여 수학적인 콤퓨터 계산프로그램과 실측으로서 비교하였다. 고선량율 선원에 의한 방사선 조사선량과 조직내 흡수선량분포는 각각 Sievert적분식과 Meisberger의 다항식을 이용하여 작성하였다. 종양크기와 모양에 가장 알맞는 선량분포의 최적화를 실현하기 위하여 저자들은 치료기준점의 선량을 일정한 값으로 고정시키고 선원의 조사시간을 조정하는 선형반복 계산방정식을 이용하였다. 모형선원이 장착된 아프터로딩관을 삽입하고 조준엑스선으로 촬영하여 종양부위를 결정한 후 콤퓨터의 도움으로 아프터로딩관의 축과 평행한 등량곡선 또는 과일모양의 선량분포 및 기관지 모양의 등선량분포가 성취되도록 선량최적화를 시행하였고 선량계에 의한 실측치와 오차가 $3\%$이하로 잘 일치하였다.

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Geant4 Simulation에서 Linac 광자선을 이용한 폐 선량평가 (Evaluation of Lung Dose Using Linac Photon Beam in Geant 4 Simulation)

  • 장은성;이효영
    • 한국방사선학회논문지
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    • 제12권4호
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    • pp.443-450
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    • 2018
  • Geant4 코드는 직선 가속기의 헤드 구조를 사용하여 이전에 구현된 BEAMnrC 데이터를 기반으로 선형가속기 (VARIAN CLINAC.)를 시뮬레이션하였다, 10MV 광자 선속에서 물팬텀의 심부선량백분율과 측면선량의 측정값과 Geant4를 비교 평가하였다. 선량 계산을 인체부위에 적용하기 위해 실제 환자의 Lung 부위를 5mm 간격으로 스캔하였다. Water phantom의 조사야($5{\times}5cm^2$), SAD 100cm에서 10MV 광자를 조사하여 Geant4 선량분포를 구하였다. 이 결과는 실제 환자의 폐(lung)에 흡수되는 선량을 측정하기는 어렵다 그래서 치료계획 시스템에 의한 선량을 비교하였다. 물 팬텀에서 측정된 심부선량 곡선과 Geant4에 의해 계산된 심부선량 곡선은 build-up 영역을 제외한 대부분의 깊이에서 ${\pm}3%$ 이내로 잘 일치하였다. 그러나 5cm와 20cm 지점에서 2.95%와 2.87%로 Geant4를 사용한 선량 계산에서 다소 높은 값을 보이고 있다. 이 두 지점은 Genat4의 geometry 파일을 통해 확인할 수 있었으며, 흉추와 흉골이 위치되어 선량이 증가된 것으로 알 수 있었다. 또한, cone beam CT를 적용한 결과에서 폐(lung)의 선량분포 오차는 3% 이내로 유사한 값을 얻었다. 따라서 Geant4를 이용하여 선량을 계산할 때 DICOM 파일에 직접 선량의 contour map이 표현될 수 있다면 Geant4의 임상적 적용이 다양하게 사용될 것이다.

선형가속기를 이용한 방사선 수술의 선량분포의 실험적 확인 (Verification of Dose Distribution for Stereotactic Radiosurgery with a Linear Accelerator)

  • 박경란;김계준;추성실;이종영;조철우;이창걸;서창옥;김귀언
    • Radiation Oncology Journal
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    • 제11권2호
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    • pp.421-430
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    • 1993
  • The calculation of dose distribution in multiple arc stereotactic radiotherapy is a three-dimensional problem and, therefore, the three-dimensional dose calculation algorithm is important and the algorithm's accuracy and reliability should be confirmed experimentally. The aim of this study is to verify the dose distribution of stereotactic radiosurgery experimentally and to investigate the effect of the beam quality, the number of arcs of radiation, and the tertiary collimation on the resulting dose distribution. Film dosimetry with phantom measurements was done to get the three-dimensional orthogonal isodose distribution. All experiments were carried out with a 6 MV X-ray, except for the study of the effects of beam energy on dose distribution, which was done for X-ray energies of 6 and 15 MV. The irradiation technique was from 4 to 11 arcs at intervals of from 15 to 45 degrees between each arc with various field sizes with additional circular collimator. The dose distributions of square field with linear accelerator collimator compared with the dose distributions obtained using circular field with tertiary collimator. The parameters used for comparing the results were the shape of the isodose curve, dose fall-offs fom $90\%$ to $50\%$ and from $90\%\;to\;20\%$ isodose line for the steepest and shallowest profile, and $A=\frac{90\%\;isodose\;area}{50\%\;isodose\;area-90\%\;isodose\;area}$(modified from Chierego). This ratio may be considered as being proportional to the sparing of normal tissue around the target volume. The effect of beam energy in 6 and 15 MV X-ray indicated that the shapes of isodose curves were the same. The value of ratio A and the steepest and shallowest dose fall-offs for 6 MV X-ray was minimally better than that for 15 MV X-ray. These data illustrated that an increase in the dimensions of the field from 10 to 28 mm in diameter did not significantly change the isodose distribution. There was no significant difference in dose gradient and the shape of isodose curve regardless of the number of arcs for field sizes of 10, 21, and 32 mm in diameter. The shape of isodose curves was more circular in circular field and square in square field. And the dose gradient for the circular field was slightly better than that for the square field.

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