• 제목/요약/키워드: Minimum Dose

검색결과 376건 처리시간 0.025초

염색폐수의 생물학적 전처리 조건변화에 의한 최적 펜톤시약 투입량 결정에 관한 연구 (Optimum Dosage of Fenton's Reagent for the Dyeing Wastewater by the Different Conditions of Biological Treatment as the Pre-treatment Process)

  • 배준삼;이상호
    • 한국환경과학회지
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    • 제14권7호
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    • pp.683-689
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    • 2005
  • The consecutive combination process of a biological process as the pre-treatment and a chemical process as the post-treatment is applied for the dyeing wastewater. The poor efficiency of biological treatment using pure oxygen makes the chemical treatment cost high. It is necessary to improve the efficiency of biological treatment in order to reduce the cost of chemical treatment. The purpose of this paper is to find the minimum dose of chemical reagent to fit the Discharged Water Quality Standards for the different biological treatment effluents. Results revealed that the minimum dosage of Fenton's reagent lead to save the cost of chemical treatment based on the guideline dose in the treatment plant. The possible maximum saving reagents was up to $70\%$ for the effluent of the pilot plant packed with the carrier imbedded microorganisms which were selected from the present treatment plant.

Dosimetric Analysis on the Effect of Target Motion in the Delivery of Conventional IMRT, RapidArc and Tomotherapy

  • Song, Ju-Young
    • 한국의학물리학회지:의학물리
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    • 제28권4호
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    • pp.164-170
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    • 2017
  • One of the methods to consider the effect of respiratory motion of a tumor target in radiotherapy is to establish a treatment plan with the internal target volume (ITV) created based on an accurate analysis of the target motion displacement. When this method is applied to intensity modulated radiotherapy (IMRT), it is expected to yield a different treatment dose distribution under the motion condition according to the IMRT method. In this study, we prepared ITV-based IMRT plans with conventional IMRT using fixed gantry angle beams, RapidArc using volumetric modulated arc therapy, and tomotherapy using helical therapy. Then, the variation in dose distribution caused by the target motion was analyzed by the dose measurement in the actual motion condition. A delivery quality assurance plan was prepared for the established IMRT plan and the dose distribution in the actual motion condition was measured and analyzed using a two-dimensional diode detector placed on a moving phantom capable of simulating breathing movements. The dose measurement was performed considering only a uniform target shape and motion in the superior-inferior (SI) direction. In this condition, it was confirmed that the error of the dose distribution due to the target motion is minimum in tomotherapy. This is thought to be due to the characteristic of tomotherapy that treats the target sequentially by dividing it into several slices. When the target shape is uniform and the main target motion direction is SI, it is considered that tomotherapy for the ITV-based IMRT method has a characteristic which can reduce the dose difference compared with the plan dose under the target motion condition.

Measurements of Neutron Activation and Dose Rate Induced by High-Energy Medical Linear Accelerator

  • Kwon, Na Hye;Jang, Young Jae;Kim, Jinsung;Kim, Kum Bae;Yoo, Jaeryong;Ahn, So Hyun;Kim, Dong Wook;Choi, Sang Hyoun
    • 한국의학물리학회지:의학물리
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    • 제32권4호
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    • pp.145-152
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    • 2021
  • Purpose: During the treatments of cancer patients with a linear accelerator (LINAC) using photon beams with energies ≥8 MV, the components inside the LINAC head get activated through the interaction of photonuclear reaction (γ, n) and neutron capture (n, γ). We used spectroscopy and measured the dose rate for the LINAC in operation after the treatment ended. Methods: We performed spectroscopy and dose rate measurements for three units of LINACs with a portable high-purity Germanium (HPGe) detector and a survey meter. The spectra were obtained after the beams were turned off. Spectroscopy was conducted for 3,600 seconds, and the dose rate was measured three times. We identified the radionuclides for each LINAC. Results: According to gamma spectroscopy results, most of the nuclides were short-lived radionuclides with half-lives of 100 days, except for 60Co, 65Zn, and 181W nuclides. The dose rate for three LINACs obtained immediately in front of the crosshair was in the range of 0.113 to 0.129 µSv/h. The maximum and minimum dose rates measured on weekends were 0.097 µSv/h and 0.092 µSv/h, respectively. Compared with the differences in weekday data, there was no significant difference between the data measured on Saturday and Sunday. Conclusions: Most of the detected radionuclides had half-lives <100 days, and the dose rate decreased rapidly. For equipment that primarily used energies ≤10 MV, when the equipment was transferred after at least 10 minutes after shutting it down, it is expected that there will be little effect on the workers' exposure.

VERO system을 이용한 정위적 체부 방사선치료(SBRT)의 정확성 평가 (Assessment on Accuracy of Stereotactic Body Radiation therapy (SBRT) using VERO)

  • 이위용;김현진;윤나리;홍효지;김홍일;백승완
    • 대한방사선치료학회지
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    • 제31권1호
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    • pp.17-24
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    • 2019
  • 목 적: 본 연구는 정위적체부방사선치료(Stereotactic Body Radiation Therapy, SBRT)용으로 개발된 선형가속기 VERO치료 시, 동중심점(Isocenter) 일치성과 점선량(Point dose)의 정확성을 평가하고자 한다. 대상 및 방법: 2018년 6월부터 12월까지 본원에서 시행한 SBRT 중 무작위로 선정한 10건의 치료계획으로 분석하였다. 선형가속기의 출력 안정성을 평가하기 위해 출력검출기 PTW-LinaCheck로 출력균일성(Output constancy)을 측정하였다. Laser와 kV imaging, MV beam의 기하학적 Isocenter의 정확성을 Isocenter Phantom(Tofu Phantom, Brain Lab)을 이용해 측정하고 평가하였다. 계획선량과 치료선량의 정확성 평가는 아크릴 팬텀($30{\times}30{\times}20cm$), 이온챔버 CC-01(IBA Dosimetry)와 Electrometer(IBA Dosimetry)를 이용해 선량을 측정하여 비교 및 분석하였다. 결 과: VERO의 출력균일성을 측정한 결과 0.66 %로 계산되었다. 기하학적 Isocenter 정확성은 Phantom 내부 Ball Isocenter의 오차 값을 분석한 결과 X축 방향에서는 최대 0.4 mm, 최소 0.0 mm로 평균값 0.28 mm였고, Y축 방향에서는 최대 -0.4 mm, 최소 0.0 mm로 평균값 -0.24 mm의 결과값을 얻었다. 치료계획선량과 실제측정선량을 비교 및 분석한 결과 치료계획선량과 실제측정선량의 오차는 최대 0.97 %, 최소 0.08%로 측정되었다. 결 론: 장비의 출력선량 평균은 0.66 %로 권고기준 ${\pm}3%$에 충족하고 매우 균일하게 출력되었다. 기하학적 Isocenter 정확성 평가에서 권고기준 ${\pm}1mm$ 이내로 환자 자세의 재현성이 매우 우수하다고 생각된다. 치료계획선량과 실제측정선량의 차이는 평균 0.52 %로 권고기준 3 % 이내로 충족하여 예측한 선량을 얻을 수 있음을 확인하였다. 이 실험들을 통해 VERO장비가 SBRT에 적합하고 우수한 치료 효과를 얻을 수 있을 것으로 사료된다.

여과재(濾過材)의 종류(種類)에 따른 최소유동상(最小流動狀) 속도(速度) 및 팽창(膨脹)에 관한 연구(硏究) (A Study on the Minimum Fluidization Velocity and Expansion of Various Media)

  • 최승일;최준석
    • 상하수도학회지
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    • 제10권2호
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    • pp.55-69
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    • 1996
  • Backwashing is one of the most important processes in water treatment. Several models have been utilized to predict minimum fluidization velocity and expansion of media. However, it is not unusual that the actual bahavior of media dose not agree well with the prediction. This study has investigated the applicability of models in predicting the minimum fluidization velocity of sand media. However even the better model has predicted minimum fluidization velocity 1.1 to 1.8 times higher than actual fluidization velocity. The expansion rate of sand media was inspected. It is found that the actual expansion rate was greater than the predicted. In this study condition, use of $d_{10}$ instead of $d_{60}$ was better to predict the expansion of media. On the contrary to the sand media, the actual expansion of anthracite media was less than that predicted. Sometimes it is reported that the dual media has been overflown during backwashing and mixed severely at the interface. It is because the grain size distribution of anthracite has not been selected properly. The numerical values for media expansion found in this study could be referred as the useful data in operating and/or designing filter media.

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Optimal Monitoring Intervals and MDA Requirements for Routine Individual Monitoring of Occupational Intakes Based on the ICRP OIR

  • Ha, Wi-Ho;Kwon, Tae-Eun;Jin, Young Woo
    • Journal of Radiation Protection and Research
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    • 제45권2호
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    • pp.88-94
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    • 2020
  • Background: The International Commission on Radiological Protection (ICRP) has recently published report series on the occupational intakes of radionuclides (OIR) for internal dosimetry of radiation workers. In this study, the optimized monitoring program including the monitoring interval and the minimum detectable activity (MDA) of major radionuclides was suggested to perform the routine individual monitoring of internal exposure based on the ICRP OIR. Materials and Methods: The derived recording levels and the critical monitoring quantities were reviewed from international standards or guidelines by the International Atomic Energy Agency (IAEA), the International Organization for Standardization (ISO), and the European Radiation Dosimetry Group (EURADOS). The OIR data viewer provided by ICRP was used to evaluate the monitoring intervals and the MDA, which are derived from the reference bioassay functions and the dose coefficients. Results and Discussion: The optimal monitoring intervals were determined taking account of two requirement conditions on the potential intake underestimation and the MDA values. The MDA requirement values of the selected radionuclides were calculated based on the committed effective dose from 0.1 mSv to 5 mSv. The optimized routine individual monitoring program was suggested including the optimal monitoring intervals and the MDA requirements. The optimal MDA values were evaluated based on the committed effective dose of 0.1 mSv. However, the MDA can be adjusted considering the practical operation of the routine individual monitoring program in the nuclear facilities. Conclusion: The monitoring intervals and the MDA as crucial factors for the routine monitoring were described to suggest the optimized routine individual monitoring program of the occupational intakes. Further study on the alpha/beta-emitting radionuclides as well as short lived gamma-emitting nuclides will be necessary in the future.

대학 내 학습공간과 공동 생활공간에 대한 실내 라돈 농도 측정과 유효선량 산출 (Indoor Radon Levels and Effective Dose Estimation in Learning and Common Living Space of University)

  • 김정수
    • 한국방사선학회논문지
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    • 제12권3호
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    • pp.329-334
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    • 2018
  • 라돈은 자연방사성원소로 호흡을 통해 인체에 피폭된다. 본 연구에서는 2017년 6월 1일부터 2017년 8월 28일까지 3개월 동안 A대학의 8개 건축물에 대해 실내 라돈농도를 측정하여 비교하였고, 연간 유효선량을 도출하였다. 본 연구에서 A대학의 건축물 Hall G와 Hall F의 라돈농도는 각각 $81Bq/m^3$, $14Bq/m^3$로 나타났으며, 전체 조사 건축물의 평균 실내 라돈농도는 $41.63Bq/m^3$로 나타났다. 대학 내 학습공간과 생활공간에 대한 연간 유효선량 환산치의 평균은 0.40 mSv/y이며 최대 연간 유효선량은 0.78 mSv/y, 최소 연간 유효선량은 0.13 mSv/y로 나타났다. 학교는 학생들이 오랜 시간 머무르는 공간이므로 건축물에 대한 적절한 환기와 관리를 통해 실내라돈 농도를 낮추는 것이 라돈에 대한 자연방사선 피폭을 낮추는 방법이다.

스마트칩 카드을 이용한 광 자극 발광 특성 연구 (A Study on Retrospective of External Radiation Exposure Dose by Optically Stimulated Luminescence of Smart Chip Card)

  • 박상원;유세종
    • 대한방사선기술학회지:방사선기술과학
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    • 제42권5호
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    • pp.379-385
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    • 2019
  • Radiation is used for various purposes such as cancer therapy, research of industrial and drugs. However, in case of radiation accidents such as terrorism, collapsing nuclear plant by natural disasters like Fukushima in 2011, very high radiation does expose to human and could lead to death. For this reason, many people are concerning about radiation exposures. Therefore, assessment and research of retrospective radiation dose to human by various path is an necessary task to be continuously developed. Radiation exposure for workers in radiation fields can be generally measured using a personal exposure dosimeter such as TLD, OSLD. However, general people can't be measured radiation doses when they are exposed to radiation. And even if radiation fields workers, when they do not in possession personal dosimeter, they also can't be measured exposure dose immediately. In this study, we conduct retrospective research on reconstruction of dose after exposure by using smart chip card of personal items through Optically Stimulated Luminescence (OSL). The OSL signal of smart chip card shows linear response from 0.06 Gy to 15 Gy and results of fading rate 45 %, 48% for 24 and 48 hours due to the natural emission of radiation in sample, respectively. The minimum detectable limit (MDD) was 0.38 mGy. This values are expected to use as correction values for reconstruction of exposure dose.

Dosimetric Comparison between Varian Halcyon Analytical Anisotropic Algorithm and Acuros XB Algorithm for Planning of RapidArc Radiotherapy of Cervical Carcinoma

  • Mbewe, Jonathan;Shiba, Sakhele
    • 한국의학물리학회지:의학물리
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    • 제32권4호
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    • pp.130-136
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    • 2021
  • Purpose: The Halcyon radiotherapy platform at Groote Schuur Hospital was delivered with a factory-configured analytical anisotropic algorithm (AAA) beam model for dose calculation. In a recent system upgrade, the Acuros XB (AXB) algorithm was installed. Both algorithms adopt fundamentally different approaches to dose calculation. This study aimed to compare the dose distributions of cervical carcinoma RapidArc plans calculated using both algorithms. Methods: A total of 15 plans previously calculated using the AAA were retrieved and recalculated using the AXB algorithm. Comparisons were performed using the planning target volume (PTV) maximum (max) and minimum (min) doses, D95%, D98%, D50%, D2%, homogeneity index (HI), and conformity index (CI). The mean and max doses and D2% were compared for the bladder, bowel, and femoral heads. Results: The AAA calculated slightly higher targets, D98%, D95%, D50%, and CI, than the AXB algorithm (44.49 Gy vs. 44.32 Gy, P=0.129; 44.87 Gy vs. 44.70 Gy, P=0.089; 46.00 Gy vs. 45.98 Gy, P=0.154; and 0.51 vs. 0.50, P=0.200, respectively). For target min dose, D2%, max dose, and HI, the AAA scored lower than the AXB algorithm (41.24 Gy vs. 41.30 Gy, P=0.902; 47.34 Gy vs. 47.75 Gy, P<0.001; 48.62 Gy vs. 50.14 Gy, P<0.001; and 0.06 vs. 0.07, P=0.002, respectively). For bladder, bowel, and left and right femurs, the AAA calculated higher mean and max doses. Conclusions: Statistically significant differences were observed for PTV D2%, max dose, HI, and bowel max dose (P>0.05).

부분유방 방사선조사 시 저자기장이 선량분포에 미치는 영향 (Effect of Low Magnetic Field on Dose Distribution in the Partial-Breast Irradiation)

  • 김정인;박소연;이양훈;신경환;우홍균;박종민
    • 한국의학물리학회지:의학물리
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    • 제26권4호
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    • pp.208-214
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    • 2015
  • 이 연구 목적은 부분유방 방사선조사 시 저자기장이 선량분포에 주는 영향을 조사하는 것이다. 11명의 초기 유방암 환자들이 뷰레이 시스템에서 38.5 Gy를 10회의 부분유방 방사선 조사 방법으로 치료를 받았다. 모든 치료계획은 저자기장이 있을 때와 없을 때의 선량분포를 각각 계산하고, 각 구조물에 대하여 선량과 용적의 차이값을 평가하였다. 치료계획용적에 대해서는 평균선량, 최소, 최대 선량 그리고 처방선량의 최소한 90%, 95%, 107%를 조사받는 용적을 각각 분석에 포함하였다. 정상조직장기 중 치료와 동일한 방향 폐는 평균선량, 20 Gy를 받는 용적을 평가하고, 반대방향의 폐는 평균선량만 평가하였다. 심장은 평균선량, 최대선량과 20 Gy를 받는 용적을 각각 평가하였다. 내 외각 껍질구조에 대해서는 평균선량, 최소, 최대 선량을 각각 평가하였다. 치료계획용적의 경우 저자기장에 의한 선량 분포의 영향은 최대 2%의 용적 변화, 4 Gy 선량 변화 차이를 보였다. 정상조직 장기에 대해서는 자기장에 의한 선량 분포의 영향은 발견되지 않았다. 내 외각 껍질구조에서 두 선량분포 계산에서 평균값의 차이는 작지만 평균선량의 차이가 유효하게 나타났다. 최소 선량 분석에서는 내 외각 껍질구조에서 차이가 없었다. 자기장에 의한 선량 분포의 영향은 외각 껍질구조에서 최대선량 값 분석에서 $5.0{\pm}10.5Gy$으로 나타났다. Co-60 빔을 이용한 세기조절 방사선치료계획의 부분유방 방사선조사 치료에서 0.35 T 저자기장에 의한 선량 분포 영향은 인체 내부에서는 크게 발견되지 않았다. 다만 인체 외부에서 선량 증가가 관찰되었고, 이는 치료시스템 헤드에서 발생되는 이차전자와 인체 표면 부근에서 산란된 이차전자가 자기장의 방향으로 이동하면서 선량 분포를 형성하고 있다.