• 제목/요약/키워드: lens dose

검색결과 90건 처리시간 0.025초

핵의학과 PET/CT실 방사선작업종사자의 수정체 부위의 등가선량과 흉부의 유효선량의 측정 비교 (Comparison of the Equivalent Dose of the Lens Part and the Effective Dose of the Chest in the PET/CT Radiation Workers in the Nuclear Medicine Department)

  • 손상준;박정규;정동경;박명환
    • 대한방사선기술학회지:방사선기술과학
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    • 제42권3호
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    • pp.209-215
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    • 2019
  • Comparison of the effective dose of the chest and the equivalent dose of the lens site in the radiation workers working at four medical institutions with the PET / CT room located in one metropolitan city and province from April 1 to June 30, 2018 Respectively. Radioactive medicine were measured at the time of dispensing and at the time of injection. In this experiment, the average dispensing time per patient was 5.7 minutes and the average injection time was 3.1 minutes. The equivalent dose at the lens site was $0.78{\mu}Sv/h$ for 1 mCi, and the effective dose for chest was $0.18{\mu}Sv/h$ per 1 mCi. The equivalent dose at the lens site during injection was $0.88{\mu}Sv/h$ per mCi and the effective dose of chest was $0.20{\mu}Sv/h$ per mCi. The daily effective dose of the chest was $0.9{\pm}0.6{\mu}Sv$ and the equivalent dose of the lens site was $3.6{\pm}1.4{\mu}Sv$ during daily dosing for 20 days. The effective dose of the chest during the day was $0.6{\pm}0.5{\mu}Sv$ and the equivalent dose of the lens was $2.2{\pm}1.0{\mu}Sv$. At the time of dispensing, the equivalent dose of the lens was $0.187{\pm}0.035mSv$, the effective dose of the chest was $0.137{\pm}0.055mSv$, the equivalent dose of the lens was $0.247{\pm}0.057mSv$, and the effective dose of the monthly chest was $0.187{\pm}0.021mSv$. As a result of the corresponding sample test, the equivalent dose and the effective dose of the chest, the effective dose of the chest, the effective dose of the chest, the effective dose of the chest, The equivalent dose of the lens and the effective dose of the chest were statistically significant (p<0.05) with a significance of 0.000. However, there was no statistically significant difference (p>0.05) between the equivalent dose and the effective dose of the chest, the equivalent dose of the lens at the time of injection, and the effective dose of the chest at 0.138 and 0.230, respectively.

삼차원 뇌혈관조영술에서 테이블 높이와 확대율 조절에 따른 수정체 선량 감소에 대한 연구 (Radiation Dose Reduction of Lens by Adjusting Table Height and Magnification Ratio in 3D Cerebral Angiography)

  • 윤종태;이기백
    • 대한방사선기술학회지:방사선기술과학
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    • 제45권4호
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    • pp.313-320
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    • 2022
  • Both angiography and interventional procedures accompanied by angiography provide many diagnostic and therapeutic benefits to patients and are rapidly increasing. However, unlike general radiography or computed tomography using the same X-ray, the amount of radiation is quite high, but the dose range can vary considerably for each patient and operator. The high sensitivity of the lens to radiation during cerebral angiography and neurointervention is already well known, and although there are many related studies, it is insufficient to easily reduce radiation in diagnosis and treatment. In this situation, in particular, by adding three-dimensional rotational angiography (3D-RA) to the existing two-dimensional (2D) angiography, it is now possible to make an accurate diagnosis. However, since this 3D-RA acquires images through projection of more radiation than before, the exposure dose of the lens may be higher. Therefore, we tried to analyze whether the radiation dose of the lens can be reduced by moving the lens out of the field range by adjusting the table height and magnification ratio during the examination using 3D-RA. The surface dose was measured using a rando phantom and a radiophotoluminescent glass dosimeter (PLD) and the radiation dose was compared by adjusting the table height and magnification ratio based on the central point. As a result, it was found that the radiation dose of the lens decreased as the table height increased from the central point, that is, as the lens was out of the field of view. In conclusion, in 3D-RA, moving the table position of about 2 cm in height will make a significant contribution to the dose reduction of the lens, and it was confirmed that adjusting the magnification ratio can also reduce the surface dose of the lens.

Reduction of Radiation Dose to Eye Lens in Cerebral 3D Rotational Angiography Using Head Off-Centering by Table Height Adjustment: A Prospective Study

  • Jae-Chan Ryu;Jong-Tae Yoon;Byung Jun Kim;Mi Hyeon Kim;Eun Ji Moon;Pae Sun Suh;Yun Hwa Roh;Hye Hyeon Moon;Boseong Kwon;Deok Hee Lee;Yunsun Song
    • Korean Journal of Radiology
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    • 제24권7호
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    • pp.681-689
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    • 2023
  • Objective: Three-dimensional rotational angiography (3D-RA) is increasingly used for the evaluation of intracranial aneurysms (IAs); however, radiation exposure to the lens is a concern. We investigated the effect of head off-centering by adjusting table height on the lens dose during 3D-RA and its feasibility in patient examination. Materials and Methods: The effect of head off-centering during 3D-RA on the lens radiation dose at various table heights was investigated using a RANDO head phantom (Alderson Research Labs). We prospectively enrolled 20 patients (58.0 ± 9.4 years) with IAs who were scheduled to undergo bilateral 3D-RA. In all patients' 3D-RA, the lens dose-reduction protocol involving elevation of the examination table was applied to one internal carotid artery, and the conventional protocol was applied to the other. The lens dose was measured using photoluminescent glass dosimeters (GD-352M, AGC Techno Glass Co., LTD), and radiation dose metrics were compared between the two protocols. Image quality was quantitatively analyzed using source images for image noise, signal-to-noise ratio, and contrast-to-noise ratio. Additionally, three reviewers qualitatively assessed the image quality using a five-point Likert scale. Results: The phantom study showed that the lens dose was reduced by an average of 38% per 1 cm increase in table height. In the patient study, the dose-reduction protocol (elevating the table height by an average of 2.3 cm) led to an 83% reduction in the median dose from 4.65 mGy to 0.79 mGy (P < 0.001). There were no significant differences between dose-reduction and conventional protocols in the kerma area product (7.34 vs. 7.40 Gy·cm2, P = 0.892), air kerma (75.7 vs. 75.1 mGy, P = 0.872), and image quality. Conclusion: The lens radiation dose was significantly affected by table height adjustment during 3D-RA. Intentional head off-centering by elevation of the table is a simple and effective way to reduce the lens dose in clinical practice.

CT 검사에서 유리선량계를 이용한 수정체의 비스무트 차폐 효과 (Effectiveness of Bismuth Shield to Reduce Eye Lens Radiation Dose Using the Photoluminescence Dosimetry in Computed Tomography)

  • 정미영;권대철;권수일
    • 대한방사선기술학회지:방사선기술과학
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    • 제32권3호
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    • pp.307-312
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    • 2009
  • CT 검사에서 수정체 차폐용 비스무트(bismuth)를 사용하여 수정체 선량의 감소효과를 유리선량계로 측정하여 비스무트 차폐효과 및 영상을 평가하였다. 안구 및 두부 CT 검사에서 차폐용 비스무트를 사용하여 수정체 선량의 감소와 차폐 효과를 평가하기 위해 인체모형 팬텀으로 유리선량계를 이용하여 수정체 선량을 평가하였다. 유리선량계를 이용하여 비스무트를 사용하기 전의 평균 선량은 21.54 mGy이었고, 사용 후의 선량은 10.46 mGy로 51.3%의 선량 감소효과가 있다. 차폐용 비스무트를 사용한 안구 64 MDCT 촬영에서 선량감소 효과가 있어 수정체를 포함한 안구 CT 스캔에서는 비스무트를 사용하여 검사하도록 권고한다.

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A preliminary evaluation of the implementation of a radiation protection program for the lens of the eye in Korean nuclear power plants

  • Kong, Tae Young;Kim, Si Young;Cho, Moonhyung;Jung, Yoonhee;Son, Jung Kwon;Jang, Han;Kim, Hee Geun
    • Nuclear Engineering and Technology
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    • 제53권9호
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    • pp.3035-3043
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    • 2021
  • Epidemiological research has revealed that radiation exposure can cause cataracts. The Korean nuclear regulatory body has proposed the reduction of the occupational dose limit for the lens of the eye from 150 mSv/y to 100 mSv/5y, with an additional limitation of not exceeding 50 mSv/y for a specific year, taking into account the recommendations of the International Commission on Radiological Protection, and the International Atomic Energy Agency. This means that radiation workers should receive the same level of radiation safety for the lens of the eye as for whole-body protection. Korean nuclear power plants (NPPs) are conducting research to establish the radiation protection program for the lens of the eye. In terms of the preliminary results of the implementation of the radiation protection program for the lens of the eye dedicated to Korean NPPs, this review article summarizes the current state of understanding of the regulations, technical guidance, eye lens dosimeters, and radiation field conditions resulting in lens dose.

선형가속기형 방사선수술시 인형 팬텀에서 수정체 및 갑상선 선량 (Radiation Dose of Lens and Thyroid in Linac-based Radiosurgery in Humanoid Phantom)

  • 김대용;김일한
    • Radiation Oncology Journal
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    • 제16권4호
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    • pp.517-529
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    • 1998
  • 목적 : 정위방사선수술은 뇌동정맥기형 및 청신경초종, 뇌수막종양, 뇌하수체종양 뿐만 아니라 단일 전이성 종양의 치료에 있어서도 그 이용의 빈도가 급격히 늘어나는 추세이다. 그에 따라 목표부위에 있어서 정위방사선술의 선량분포에 관한 연구는 많이 발표되고 있으나 두 개강 외의 수정체 갑상선과 같이 방사선의 결정적 또는 확률적 효과에 민감한 장기와 같은 조직에서 흡수되는 선량에 관한 자료는 극히 제한적이다. 본 연구는 인체모형에서 방사선수술시 수정체 및 갑상선의 선량을 측정하고 그 선량에 영향을 미치는 변수를 규명하고자 하였다. 대상 및 방법 : 6 곳의 상이한 회전중심점에서 각각 서울대학교 의과대학 치료방사선과학교실에서 개발한 선형가속기형 정위방사선수술 기법을 이용하여 치료계획을 세웠다. 각 회전중심점당 6개의 arc를 기본으로 하고 각 arc의 범위는 100도를 기준으로 하고 보조콜리메이터 크기는 직경 2cm로 선정하였다. 각 arc 별로 250cGy 조사한 후 내회 열형광선량계를 이용하여 수정체 및 갑상선의 표면에 미치는 선량을 측정하였다. 결과 : 회전중심점 또는 arc plane 이 각 장기와 가까울수록 흡수 선량이 높았다. exit beam이 수정체나 갑상선을 지나지 않을 경우 각 장기의 선량은 최대선량의 0.23$\pm$0.08$\%$ 와 0.18$\pm$0.05$\%$ 이고, exit beam 이 수정체나 갑상선을 지나는 경우 각 장기의 선량은 최대선량의 0.76$\pm$0.12$\%$ 와 0.41$\pm$0.04$\%$ 이다. exit beam의 통과 여부가 각 장기의 선량에 미치는 가장 큰 인자이며, 장기를 통과하는 arc에 의해 흡수하는 선량은 총 선량의 80$\%$를 차지한다. 인체 모형의 표면선량과 5mm 깊이에서의 선량에 큰 차이가 없어 표면선량을 수정체 및 갑상선 선량으로 대체할 수 있다고 판단한다. 결론 : 정위방사선수술시 인체모형의 수정체와 갑상선에 흡수되는 방사선량을 측정한 결과 회전중심점 및 arc plane 이 각 장기와 가까울수록 높은 흡수 선량을 나타내었으며, exit beam이 수정체나 갑상선을 통과하는 경우 흡수선량이 높았고 exit beam의 통과 여부가 각 장기의 흡수선량에 가장 큰 영향을 미쳤다. 또한 수정체와 갑상선의 표면선량은 수정체 및 갑상선 선량과 큰 차이가 없었다. 최적의 방사선수술을 위한 계획을 수립할 경우 각 장기의 선량은 최대 1$\%$ 미만으로 후유증을 일으키기에 낮은 선량이기는 하나, 특히 소아 등에서는 갑상선 선량을 가능한 낮추어야 할 것이다.

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고 선량율 감마선 조사에 따른 렌즈의 열화 (A CCD Camera Lens Degradation Caused by High Dose-Rate Gamma Irradiation)

  • 조재완;이준구;허섭;구인수;홍석붕
    • 전기학회논문지
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    • 제58권7호
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    • pp.1450-1455
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    • 2009
  • Assumed that an IPTV camera system is to be used as an ad-hoc sensor for the surveillance and diagnostics of safety-critical equipments installed in the in-containment building of the nuclear power plant, an major problem is the presence of high dose-rate gamma irradiation fields inside the one. In order to uses an IPTV camera in such intense gamma radiation environment of the in-containment building, the radiation-weakened devices including a CCD imaging sensor, FPGA, ASIC and microprocessors are to be properly shielded from high dose-rate gamma radiation using the high-density material, lead or tungsten. But the passive elements such as mirror, lens and window, which are placed in the optical path of the CCD imaging sensor, are exposed to a high dose-rate gamma ray source directly. So, the gamma-ray irradiation characteristics of the passive elements, is needed to test. A CCD camera lens, made of glass material, have been gamma irradiated at the dose rate of 4.2 kGy/h during an hour up to a total dose of 4 kGy. The radiation induced color-center in the glass lens is observed. The degradation performance of the gamma irradiated lens is explained using an color component analysis.

Development of Detailed Korean Adult Eye Model for Lens Dose Calculation

  • Han, Haegin;Zhang, Xujia;Yeom, Yeon Soo;Choi, Chansoo;Nguyen, Thang Tat;Shin, Bangho;Ha, Sangseok;Moon, Sungho;Kim, Chan Hyeong
    • Journal of Radiation Protection and Research
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    • 제45권1호
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    • pp.45-52
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    • 2020
  • Background: Recently, the International Commission on Radiological Protection (ICRP) lowered the dose limit for the eye lens from 150 mSv to 20 mSv, highlighting the importance of accurate lens dose estimation. The ICRP reference computational phantoms used for lens dose calculation are mostly based on the data of Caucasian population, and thus might be inappropriate for Korean population. Materials and Methods: In the present study, a detailed Korean eye model was constructed by determining nine ocular dimensions using the data of Korean subjects. The developed eye model was then incorporated into the adult male and female mesh-type reference Korean phantoms (MRKPs), which were then used to calculate lens doses for photons and electrons in idealized irradiation geometries. The calculated lens doses were finally compared with those calculated with the ICRP mesh-type reference computational phantoms (MRCPs) to observe the effect of ethnic difference on lens dose. Results and Discussion: The lens doses calculated with the MRKPs and the MRCPs were not much different for photons for the entire energy range considered in the present study. For electrons, the differences were generally small, but exceptionally large differences were found at a specific energy range (0.5-1 MeV), the maximum differences being about 10 times at 0.6 MeV in the anteroposterior geometry; the differences are mainly due to the difference in the depth of the lens between the MRCPs and the MRKPs. Conclusion: The MRCPs are generally considered acceptable for lens dose calculations for Korean population, except for the electrons at the energy range of 0.5-1 MeV for which it is suggested to use the MRKPs incorporating the Korean eye model developed in the present study.

ED3를 이용한 방사성동위원소 의약품의 수정체 피폭선량평가 (Estimation of Lens Dose of Radioactive Isotopes Using ED3)

  • 송하진;주용진;장한;동경래;강경원;최은진;곽종길;류재광;정운관
    • 방사선산업학회지
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    • 제11권1호
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    • pp.19-25
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    • 2017
  • It is suggested that the dose limit recommended in the Enforcement Decree of Korea's Nuclear Safety Act should not exceed 150 mSv per year for radiation workers. Recently, however, ICRP 118 report has suggested that the threshold dose of the lens should be reduced to 0.2~0.5 Gy and the mean dose should not exceed 50 mSv per year for an average of 20 mSv over 5 years. Based on these contents, $^{123}I$, $^{99m}Tc$, and $^{18}F-FDG$, which are radioisotope drugs that are used directly by radiation workers in the nuclear medicine department in Korea are expected to receive a large dose of radiation in the lens in distribution and injection jobs to administer them to patients. The ED3 Active Extremity Dosimeter was used to measure the dose of the lens in the nuclear medicine and radiation workers and how much of the dose was received per 1 mCi.

다중소자 열형광선량계에 의한 수정체 등가선량 평가의 적정성 연구 (A Feasibility Study on the Lens of Eye Dose Assessment Using the System of Multi-Element TLD)

  • 이나래;한승재;이병일;조건우
    • Journal of Radiation Protection and Research
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    • 제37권2호
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    • pp.96-102
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    • 2012
  • 2011년 국제방사선방호위원회(ICRP)는 최근 역학 조사들을 근거로 방사선영향으로 발생할 수 있는 암 외 질환의 위험에 대한 권고를 개정하였다. 특히 수정체 조직반응의 발단선량을 0.5 Gy로 하향 조정하면서, 계획 피폭상황에서 직무 피폭 시 수정체 등가선량한도를 "정해진 5년 기간 동안 평균해서 연간 20 mSv, 그 중 어느 한 해에도 50 mSv를 초과하지 않아야 한다"로 권고하였다. 방사선작업종사자의 외부선량은 개인 열형광선량계(TLD)를 사용하여 감시하고 있으며 판독한 열형광소자별 반응도를 선량평가 알고리즘에 적용하면 개인의 수정체 등가선량을 구할 수 있다. 본 논문에서는 성능검사에 사용된 Harshaw TLD의 소자반응도를 사용하여 현재 사용 중인 알고리즘들에 의한 수정체 등가선량을 평가하였다. 그 결과 성능검사에 사용된 TLD의 소자반응도를 사용하여 수정체 등가선량을 평가한 경우 알고리즘 간의 상대오차는 최대 48.84% 내에 있는 것으로 나타났다.