• 제목/요약/키워드: ICRP 103

검색결과 29건 처리시간 0.021초

금전계수 도출을 위한 경제학적 방법론 연구 (A Study on Economic Methodology for Deriving Money Coefficients)

  • 백민희
    • 방사선산업학회지
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    • 제17권1호
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    • pp.111-118
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    • 2023
  • The International Commission on Radiological Protection (ICRP) 103 recommends a cost-benefit analysis method as an auxiliary tool for scientific and rational decision-making for the principle of optimization of radiological protection. In order to conduct a cost-benefit analysis, the safety improvement of nuclear power by regulation must be measured and converted into monetary terms. The improvement of nuclear safety can be measured by reducing the radiation exposure dose of the people, and it is necessary to determine the coefficient to convert the radiation exposure dose into money. The monetary coefficient is calculated as the product of the statistical life value (VSL) and the nominal risk coefficient. In order to derive the monetary coefficient, the willingness to pay (WTP) can be estimated using the contingent valuation method (CVM), which quantifies the value of non-market goods by converting them into monetary units. WTP can be estimated based on the random utility model, which is the basic model for bivariate selection type conditional value measurement data. Statistical life value can be calculated using the estimated WTP and reduction in early mortality, and a monetary coefficient can be derived.

Glass dosimeter와 PCXMC Program을 이용한 소아피폭선량 측정 및 분석 (Measurement and Analysis of Pediatric Patient Exposure Dose Using Glass dosimeter and a PC-Based Monte Carlo Program)

  • 김영은;이정화;홍선숙;이관섭
    • 대한디지털의료영상학회논문지
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    • 제14권2호
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    • pp.9-14
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    • 2012
  • Exposed dose of young child should be managed necessarily. Young child is more sensitive than adult of a Radioactivity, especially, and lives longer than adult. Must reduce exposed dose which follows The ALARA(As Low As Reasonably Achievable)rule is recommended by ICRP(International Commission on Radiological Protection)within diagnostic useful range. Therefore, We have to prepare Pediatric DRL(Diagnostic Reference Level) in Korea as soon as possible. Consequently, in this study, wish to estimate organ dose and effective dose using PCXMC Program(a PC-Based Monte Carlo Program), and measure ESD(Entrance surface dose)and organ dose using Glass dosimeter, and then compare with DRL which follows EC(European Commission)and NRPB(National Radiological Protection Board). Using glass dosimeter and PCXMC programs conforming to the International Committee for Radioactivity Prevention(ICRP)-103 tissue weighting factor based on the item before the organs contained in the Chest, Skull, Pelvis, Abdomen in the organ doses and effective dose and dose measurements were evaluated convenience. In a straightforward way to RANDO phantom inserted glass dosimeter(GD352M)by using the hospital pediatric protocol, and in a indirect way was PCXMC the program through a virtual simulation of organ doses and effective dose were calculated. The ESD in Chest PA is 0.076mGy which is slightly higher than the DRL of NRPB(UK) is 0.07mGy, and is lower than the DRL of EC(Europe) which is 0.1mGy. The ESD in Chest Lateral is 0.130mGy which is lower than the DRL of EC(Europe) is 0.2mGy. The ESD in Skull PA is 0.423mGy which is 40 percent lower than the DRL of NRPB(UK) is 1.1mGy and is 28 percent lower than the DRL of EC(Europe) is 1.5mGy. The ESD in Skull Lateral is 0.478mGy which is half than the DRL of NRPB(UK) is 0.8mGy, is 40 percent lower than the DRL of EC(Europe) is 1mGy. The ESD in Pelvis AP is 0.293mGy which is half than the DRL of NRPB(UK) is 0.60mGy, is 30 percent lower than the DRL of EC(Europe)is 0.9mGy. Finally, the ESD in Abdomen AP is 0.223mGy which is half than the DRL of NRPB(UK) is 0.5mGy, and is 20 percent lower than the DRL of EC is 1.0mGy. The six kind of diagnostic radiological examination is generally lower than the DRL of NRPB(UK)and EC(Europe) except for Chest PA. Shouldn't overlook the age, body, other factors. Radiological technician must realize organ dose, effective dose, ESD when examining young child in hospital. That's why young child is more sensitive than adult of a Radioactivity.

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직무피폭의 선량제약치에 관한 연구: 분야별 전문가 의견 중심으로 (A Study on the Dose Constraints for Occupational Exposure: Focusing on Expert Opinions by Field of Ridiation Industry)

  • 박일;박찬희;정규환;박찬호;김용건;박태진
    • 방사선산업학회지
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    • 제17권1호
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    • pp.61-67
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    • 2023
  • A Study on the Introduction of Dose Constraints for Occupational Exposures: Focusing on Experts' Opinions by Field of Radiation Industry. The International Commission on Radiological Protection suggests Justification, Optimization, and Dose Limits as the three principles of radiological protection, among which, as a means of protection optimization, ICRP 103 recommends to set dose constraints. In this study, opinions are collected from experts in each category of radiation industries for stakeholder participation to qualify dose constraints. A guidance and questionnaire for analyzing the dose constraints have been developed for their collection, and opinions were collected from radiation protection experts in selected categories. 20 out of 22 experts, consisted with 91%, have assessed the dose constraints setting is necessary, and 2 experts, consisted with 9%, assessed it is unnecessary. The average of dose constraint presented by experts for RI production institutions is to be the highest level of 15.3 mSv, and light-water reactors (14.6 mSv), non-destructive inspection (14.4 mSv), heavy-water reactor and medical institutes (13.9mSv) is to be above the overall average dose constraint. In case of public institutions, the average dose constraint is to be 8.6mSv, and research institutions (8.8mSv), educational institutions (9.6 mSv), waste disposal sites (9.7 mSv), and general industries (10.6 mSv) are resulted to below the overall average dose constraint. As for the means of setting dose constraints, 8 experts out of 22 suggested setting dose constraints for each specific industry or task. And, 5 experts especially suggest setting dose constraints for the specific groups with relatively high exposure, such as workers with above the record levels. As a countermeasure for workers who exceed the dose constraints, 15 experts out of 22 expressed that the cause analyses for them and preparation for a plan of reducing them are necessary.

ORIGINAL ARTICLE - 이동형 구내방사선촬영기로 촬영한 치근단 방사선촬영과 파노라마방사선촬영의 흡수선량과 유효선량 평가 (A absorbed and effective dose from the full-mouth periapical radiography using portable dental x-ray machine and panoramic radiography)

  • 한원정
    • 대한치과의사협회지
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    • 제50권7호
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    • pp.420-430
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    • 2012
  • Purpose: The purpose of this study was to measure the absorbed dose and to calculate the effective dose for full-mouth periapical radiography using the portable dental x-ray machine and panoramic radiography Material and Method: Thermoluminescent chips were placed at 25sites throughout the layers of the head and neck of a tissue-equivalent human skull phantom. The man phantom was exposed with the portable dental x-ray machine and panoramic unit. During full-mouth periapical radiography the exposure setting was 60 kVp, 2 mA and 0.15 ~ 0.25 seconds, while during panoramic radiography the selected exposure setting was 72 kVp, 8 mA and 18 seconds. Absorbed dose measurements were obtained and equivalent doses to individual organs were summed using ICRP 103 to calculate of effective dose. Result: In the full-mouth periapical radiography, the highest absorbed dose was recorded at the mandible body follow with submandibular glands and cheek. Using panoramic unit, the highest absorbed dose was parotid glands and the following was back of neck and submandibular glands. The effective dose in full-mouth periapical radiography using portable dental x-ray machine was 46 ${\mu}Sv$. In panoramic radiography, the effective dose was 38 ${\mu}pSv$. Conclusion: It was recommended to panoramic radiography for general check in the head and neck area because that the effect dose in the panoramic radiography was lower than the dose in the full-mouth periapical radiography using portable dental x-ray machine.

단계적 야생동식물 선량평가 코드 K-BIOTA의 특성 및 적용 (Characteristics of the Graded Wildlife Dose Assessment Code K-BIOTA and Its Application)

  • 금동권;전인;임광묵;최용호;김병호
    • Journal of Radiation Protection and Research
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    • 제40권4호
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    • pp.252-260
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    • 2015
  • 본 논문은 ICRP103 환경방호를 대비하여 국내에서 개발된 야생동식물 선량평가 코드 K-BIOTA의 기술적 배경 및 적용 사례를 기술한다. K-BIOTA는 스크리닝(screening) 선량평가(Level 1&2)와 부지 특성적 상세평가(Level 3)의 3단계의 단계적 평가방법을 적용한다. 스크리닝 단계평가는 상세평가의 필요성 여부를 판단하기 위한 예비적 평가 단계로 개별적인 생물종보다는 동식물을 그룹별로 구분하여 평가한다. Level 1 평가는 스크리닝 목적의 참조준위로부터 유도된 최대환경매체농도 값과 실제 환경매체농도 값의 비교로부터 위험도 지표(risk quotient)를 계산한다. Level 1 평가 결과 위험도 지표가 1보다 작으면 생태계의 건전성이 유지된다는 결론과 함께 평가를 종료하고, 1 보다 크면 동식물 그룹별로 평균적인 전이계수나 평형분배계수 값을 적용하여 조금 더 실제적인 Level 2 평가를 수행한다. 따라서 Level 2 평가가 Level 1 평가보다 덜 보수적이다. Level 2평가에서 위험도지표가 1 보다 작으면 생태계의 건전성이 유지된다는 결론을 내리고 평가를 종료하고, 1보다 크면 Level 3 평가를 수행한다, Level 3 평가는 부지 특성적 데이터를 고려하는 상세평가단계로, 동식물 그룹별 평가 대신 부지 대표적 동식물에 대한 개별적 선량평가를 수행하며, 대표적 동식물의 종류 및 크기, 거주인자, 전이계수, 평형분배계수에 대한 부지 특성적인 값을 사용한다. 또한 Level 3 평가 단계에서는 전이계수, 평형분배계수, 환경매체농도 (토양농도 또는 물의 농도)에 대한 개별 동식물의 피폭 선량률에 대한 불확실도 분석을 선택적으로 수행할 수 있다. 적용 가능한 확률밀도함수는 정규분포, 로그정규분포, 균일분포, 지수분포의 4가지이다. 국제원자력기구의 EMRAS II (Environmental Modeling for Radiation Safety) 모델 시나리오 비교 공동연구에 참가하여 K-BIOTA의 적용성을 검증하였다. 그 결과로 K-BIOTA는 다양한 오염 환경에서 거주하는 야생동식물의 방사선 영향을 평가하는데 유용함이 입증되었다.

완전차폐 및 이온조절형 연X선식 정전기제거장치의 개발 (Development of Radiation Free Soft X-Ray Ionizer with Ion Control)

  • 정필훈;이동훈
    • 한국안전학회지
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    • 제31권5호
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    • pp.22-27
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    • 2016
  • The Electrostatic Charge Prevention Technology is a core factor that highly influences the yield of Ultra High Resolution Flat Panel Display and high-integrated semiconductor manufacturing processes. The corona or x-ray ionizations are commonly used in order to eliminate static charges during manufacturing processes. To develop such a revolutionary x-ray ionizer that is free of x-ray radiation and has function to control the volume of ion formation simultaneously is a goal of this research and it absolutely overcomes the current risks of x-ray ionization. Under the International Commission on Radiological Protection, it must have a leakage radiation level that should be lower than a recommended level that is $1{\mu}Sv/hour$. In this research, the new generation of x-ray ionizer can easily control both the volume of ion formation and the leakage radiation level at the same time. In the research, the test constraints were set and the descriptions are as below; First, In order not to leak x-ray radiation while testing, the shielding box was fully installed around the test equipment area. Second, Implement the metallic Ring Electrode along a tube window and applied zero to ${\pm}8kV$ with respect to manage the positive and negative ions formation. Lastly, the ion duty ratio was able to be controlled in different test set-ups along with a free x-ray leakage through the metallic Ring Electrode. In the result of experiment, the maximum x-ray radiation leakage was $0.2{\mu}Sv/h$. These outcome is lower than the ICRP 103 recommended value, which is $1{\mu}Sv/h$. When applying voltage to the metallic ring electrode, the positive decay time was 2.18s at the distance of 300 mm and its slope was 0.272. In addition, the negative decay time was 2.1s at the distance of 300 mm and its slope was 0.262. At the distance of 200 mm, the positive decay time was 2.29s and its slope was 0.286. The negative decay time was 2.35s and its slope was 0.293. At the distance of 100 mm, the positive decay time was 2.71s and its slope was 0.338. The negative decay time was 3.07s and its slope was 0.383. According to these research, the observation was shown that these new concept of ionizer is able to minimize the leakage radiation level and to control the positive and negative ion duty ratio while ionization.

이동형 구내방사선촬영기와 벽걸이 구내방사선촬영기로 촬영한 치근단 방사선촬영에서 환자의 흡수선량과 유효선량 평가 (Absorbed and effective dose for periapical radiography using portable and wall type dental X-ray machines)

  • 한원정
    • 대한치과보철학회지
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    • 제50권3호
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    • pp.184-190
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    • 2012
  • 연구 목적: 이 연구는 상악 전치부와 하악 구치부 치근단 방사선촬영시 이동형 구내방사선촬영기와 벽걸이 구내방사선촬영기로 촬영한 경우에서 환자의 방사선량을 알아보고자 하였다. 연구 재료 및 방법: 방사선량 측정은 선량 측정용 두경부 마네킨의 23부위에 열형광선량계 소자를 위치시키고 해당 치근단 방사선촬영을 하였다. 열형광선량계 판독기로 흡수선량을 구하였고 방사선 조사된 조직의 비율을 곱하여 방사선 가중선량을 구하였다. 국제방사선방호위원회에서 2007년에 공지한 조직 가중계수를 이용하여 각 방사선촬영의 유효선량을 구하였다. 결과: 환자의 흡수선량은 이동형 구내방사선촬영기로 촬영한 상악 전치부와 이동형 및 벽걸이 구내방사선촬영기로 촬영한 하악 구치부 치근단방사선촬영의 경우 하악체에서 가장 높았다. 유효선량은 상악 전치부 치근단 방사선촬영에서는 이동형 촬영기로 촬영한 경우 $4{\mu}Sv$, 벽걸이 촬영기로 촬영한 경우 $2{\mu}Sv$였고 우측 하악 구치부 치근단 방사선촬영에서는 각각 $6{\mu}Sv$, $2{\mu}Sv$였다. 결론: 벽걸이 구내방사선촬영기보다 이동형 구내방사선촬영기로 촬영한 치근단 방사선촬영에서의 유효선량이 더 많기 때문에 술자는 구내방사선촬영기에 따른 방사선 노출 정도를 충분히 인지하고 이를 사용하여야 한다.

전 척추 전.후 방향 검사 시 AEC Mode와 Fix Mode에서 PC-Based Monte Carlo Program을 이용한 장기선량 및 유효선량 평가 (Evaluation of Organ and Effective Dose using A PC-Based Monte Carlo Program in AEC Mode and Fix Mode for the whole spine antero-posterior radiography)

  • 김정진;장성원;박장흠;이관섭;하동윤
    • 대한디지털의료영상학회논문지
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    • 제14권2호
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    • pp.23-31
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    • 2012
  • There are AEC mode and fix mode to exposure when the whole spine antero-posterior radiography is done by using DR equipment. This study compared the utility of fix mode to AEC mode, by evaluating organ dose and effective dose and by examining the quality of radiographic image. GE DEFINIUM 8000 and ART-200X Rando Phantom manufactured by Flukebiometical were used for this study. The Rando phantom was set in front of wall detector of X-rays equipment. AEC mode was set at 80kVp and Fix mode was set at 80kVp, 25mAs, 32mAs, 40mAs, and 50mAs. Whole spine AP image were aquired by combining C, T-L and L-S spine images obtained through 3 exposures. When obtaining C, T-L and L-S spine images, were checked for Air kerma (mGy) value calculated by UNFORS Xi meter attached at the phantom surface of center of radiation field. The effective and organ doses were compared by PCXMC program (PC-Based Monte Carlo Program). The quality of obtained radiographic image was evaluated visually by 3 radiologists using resolution chart. When the effective doses was calculated based on tissue weighting factor of ICRP-103, 1.278mSv was measured by AEC mode, and Fix mode measured 0.405mSv at 25mAs, 0.518mSv at 32mAs, 0.649mSv at 40mAs, and 0.810mSv at 50mAS. In addition, the organ dose measured with esposure at 25mAs by Fix mode was almost equivalent to the organ dose by AEC mode, at the esophagus, thyroid, oral mucosa, salivaly glands located at the cervical spine part, while the organ dose by Fix mode was in general lower than the organ dose by AEC mode at the other organs. When Fix mode at 32mAs, 40mAs, and 50mAs was compared to AEC mode for organ dose in 26 organs, AEC mode had higher measurement in 21 organs but not for than brain, trachea, thyroid, oral mucosa, and salivaly glands which are located at the cervical spine part. The image quality evaluated by resolution test chart was much higher with AEC mode than the quality with Fix mode at all exposure conditions. However, while the image quality of cervical spine exposured at 50mAs by Fix mode was lower than the quality of AEC mode, thoraco-lumbar spine and lumbo-sacral spine were calculated and the quality was similar to AEC mode. Scoliosis occurs mainly at thoraco-lumbar and lumbo-sacral spine, not at cervical spine. Compared to AEC mode, Using the appropriate protocol (80kVp, 50mAs) of fix mode for whole spine AP radiography was thought to be useful because the image quality of the thoraco-lumar and lumbo-sacral spine was similar on AEC mode, Also organ and effective doses can be decreased with Fix mode. Therefore, It is considered that fix mode can be used properly with AEC mode for whole spine AP radiography when considering patient's body posture.

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일체형 방어벽 제작을 통한 이동형 엑스선 발생기의 차폐능 평가 (Shielding Capability Evaluation of Mobile X-ray Generator through the Production assembled Shield)

  • 김승욱;안병주
    • 한국방사선학회논문지
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    • 제12권7호
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    • pp.895-908
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    • 2018
  • 의료방사선의 관리에서 가장 중요한 사항은 진료의 적정성을 확보하면서 방사선위해를 최소화하는 것이다. 국제원자력기구는 진단방사선 분야의 선량 감소 방법에 대한 지침서를 만들어 환자피폭선량을 측정하여 각 국가에 사용하도록 권고하고 있다. 또한 국내에서도 우리나라의 실정에 맞게 각 촬영마다 환자 피폭 선량값을 연구하여 진단참고준위를 제시하였다.환자가 질병 때문에 방사선 진료를 받는 것은 방사선 때문에 일어날 수 있는 위해보다 그것으로 얻어지는 이익이 크기 때문이다. 병실 이동검사와 같이 자신의 질병과 무관하게 방사선에 노출되는 환자 및 보호자들의 피폭을 줄이기 위해서는 환자, 방사선사, 의사 및 의료기관의 노력이 가장 중요하다.이에 본 연구에서는 개선방안의 일환으로 MG로 병실의 이동 검사에 대한 문제점을 제시하고 이 문제점을 근거로 하여 산란선으로 예상되는 공간선량률을 분석하였다. MG에 자체 개발한 방어벽을 설치하여 방어벽 설치 전후의 공간선량률을 측정하여 그 감소율을 분석하였다. 최종적으로 이 자료들을 종합하여 MG에 방어벽을 부착하여 방사선사의 병실이동에 대한 부담감의 최소화, 병실 이동검사로 인한 방사선사, 환자 및 보호자를 방사선 노출로부터 보호하고, 검사로 인한 주위 환자 및 보호자의 불편을 최소화하는데 의의가 있다. 이와 같은 개선안에 대해 보다 효율적인 시행을 위하여 MG에 대한 새로운 법 제도가 마련되면, 향후 예상되는 비용, 인력, 고객만족도 및 더욱 더 안정적인 피폭감소방안이 정착될 것이라 사료된다.