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      • KCI등재

        심장동맥 조영 검사 시 검사 조건에 따른 환자 선량 평가

        조용인(Yong-In Cho) 대한방사선과학회(구 대한방사선기술학회) 2023 방사선기술과학 Vol.46 No.6

        This study analyzed imaging conditions and exposure index through clinical information collection and dose calculation programs in coronary angiography examinations. Through this, we aim to analyze the effective dose according to examination conditions and provide basic data for dose optimization. In this study, ALARA(As Low As Reasonably Achievable)-F(Fluoroscopy), a program for evaluating the radiation dose of patients and the collected clinical data, was used. First, analysis of imaging conditions and exposure index was performed based on the data of the dose report generated after coronary angiography. Second, after evaluating organ dose according to 9 imaging directions during coronary angiography, with the LAO fixed at 30° & Cranial 30°, dose evaluation was performed according to tube voltage, tube current, number of frames, focus-skin distance, and field size. Third, the effective dose for each organ was calculated according to the tissue weighting factors presented in ICRP(International Commission on Radiological Protection) recommendations. As a result, the average sum of air kerma during coronary angiography was evaluated as 234.0±112.1 mGy, the dose-area product was 25.9±13.0 Gy·cm2, and the total fluoroscopy time was 2.5±2.0 min. Also, the organ dose tended to in- crease as the tube voltage, milliampere-second, number of frames, and irradiation range increased, whereas the organ dose decreased as the FSD increased. Therefore, medical radiation exposure to patients can be reduced by selecting the optimal tube voltage and field size during coronary angiography, maximizing the focal-skin distance, using the lowest tube current possible, and reducing the number of frames.

      • KCI등재

        Dose Assessment of the Eye of the Operator in the Field of Angiography and Interventional Radiography

        Jung-hoon Kim(김정훈),Yong-In Cho(조용인) 한국방사선학회 2018 한국방사선학회 논문지 Vol.12 No.2

        In the field of angiography and interventional radiology, it is said that the risk of radiation exposure to the eyes is high due to the characteristics of work, but currently divided dose assessment and management are not carried out in reality. Therefore, in this study, in order to evaluate the dose of the operator in the surgical environment and to analyze the shields, firstly, we selected the point where the operator is mainly located, evaluated the exposure dose of the eye after attaching the pocket dosimeter to the lateral angle point of the head and neck phantom, and evaluate shielding effect when wearing lead glasses that is currently commercialized. Secondly, we evaluated the tendency of the exposure dose of the eye and the shielding effect through simulation in the same geometric structure as the actual measurement. As a result, in the case of measurement using a dosimeter, the cumulative dose increased with the increase of the fluoroscopic time, and the tendency was different according to the position of the operator. Simulation results show that the dose distribution of the eye lens in the mathematical phantom is about 1.1 ~ 1.3 times higher than that of the cornea. Also, The protective effect of the lead glasses showed a shielding effect of at least 3.7 ~ 21.4% in each eye. 혈관조영 및 중재적 방사선학 분야의 경우, 업무 특성상 눈의 방사선 피폭에 대한 위험성이 높다고 알려져 있으나, 현재 구분된 선량평가 및 관리가 이루어지지 않는 실정이다. 이에 본 연구에서는 시술 환경 내 종사자의 눈에 대한 선량평가 및 차폐분석을 위해 첫 번째로, 시술자가 주로 위치하는 지점을 선정하고, 두경부 팬텀 눈의 외안각 지점에 포켓선량계를 부착한 뒤 눈에 대한 피폭선량을 평가하였고, 현재 상용화된 납 안경 착용 시 차폐효과를 산정하였다. 두 번째로, 실측과 동일한 기하학적 구조 내 모의실험을 통해 눈의 피폭선량에 대한 경향성 평가와 차폐효과에 대해 분석하였다. 그 결과, 선량계를 이용한 측정의 경우, 방사선 투시촬영 시간이 증가함에 따라 누적선량이 증가하였고, 또한 시술자의 위치에 따라 각기 다른 양상을 보였다. 모의실험의 경우, 수학적 팬텀 내 눈의 수정체의 경우 각막보다 약 1.1~1.3배 높은 선량분포를 나타내는 것을 확인하였고, 납 안경의 방호효과는 눈의 각 기관별로 최소 3.7 ~최대 21.4% 차폐효과를 보였다.

      • KCI등재

        골밀도검사에서 피검자의 장기선량 측정 및 차폐기구의 효용성 평가

        조용인(Cho Yong-In),김정훈(Kim Jung-Hoon) 대한방사선과학회(구 대한방사선기술학회) 2020 방사선기술과학 Vol.43 No.3

        Bone mineral density is a examination to measure the amount of bone in patients with metabolic bone disease. It is a low dose, but may cause unnecessary exposure to the gonads and other organs located in the periphery when examining the lumbar and proximal femurs. Therefore, the purpose of this study was to evaluated the exposure dose for each organ exposed during the bone mineral density through simulation, and analyzed the applicability of the subject to radiation shielding devices using 3D printing materials. As a result, the highest dose was shown at 11.47 uSv in the breast during lumbar examination and 8.98 uSv in the testis during proximal femur examination. Also, the farther away from the examination site, the lower the effect of the scattering-ray. The shielding effect of using 3D printing shielding device showed high results in proportion to the effective atomic number and specific gravity of the printing material. Among t he p rinting materials, A BS + W showed an e ffect o f at l east 78.72 to 9 6.3 9% c ompared to t he e xisting lead material.

      • KCI등재

        방사성동위원소를 이용한 비파괴 검사 시 작업환경 내 공간선량률 평가

        조용인,김정훈,배상일,Cho, Yong-In,Kim, Jung-Hoon,Bae, Sang-Il 한국방사선학회 2022 한국방사선학회 논문지 Vol.16 No.4

        비파괴 검사에 사용되는 방사선원은 투과력이 높고 주변 물질과의 충돌을 통해 산란선을 야기하며 이는 주변 공간선량 변화를 발생시킨다. 이에 본 연구는 몬테카를로 모의 모사를 활용하여 비파괴 검사 시 작업환경 내 선원별 공간선량 분포를 평가 및 분석하고자 하였다. 본 연구는 모의 모사 코드인 FLUKA를 활용하여 비파괴 검사에서 사용되는 <sup>60</sup>Co(3,700 GBq), <sup>192</sup>Ir(1,850 GBq), <sup>75</sup>Se(2,960 GBq) 선원을 모의모사하고, 산출된 선량률을 보건물리학회 자료와 비교하여 선원항의 신뢰성을 확보하였다. 이후 방사선안전시설(RT-room) 내 비파괴 검사를 설계하여 선원으로부터 거리에 따른 공간선량률을 평가하였다. 공간선량률 평가 결과, <sup>75</sup>Se 선원이 정면 위치에서 가장 낮은 선량 분포를 보였으며, <sup>60</sup>Co는 <sup>75</sup>Se에 비해 약 15배, <sup>192</sup>Ir 보다 약 2배 높은 선량을 나타내었다. 또한 거리에 따른 공간선량 분포는 선원과의 거리가 증가할수록 거리 역자승 법칙에 따라 감소되는 경향을 나타내었다. 예외적으로 <sup>60</sup>Co, <sup>192</sup>Ir, <sup>75</sup>Se 선원 모두 2 m 지점 이내에서 선량이 다소 증가하는 것을 확인하였다. 방사성동위원소를 이용한 비파괴 검사 시 작업환경 내 피폭선량 관리를 위해 <sup>75</sup>Se 선원과 같은 낮은 에너지를 방출하는 선원의 사용과 작업 시 방사선안전시설 내 선원과의 거리를 4 m 이상으로 유지한다면, 방사선작업종사자의 피폭선량 최적화에 도움 될 것으로 판단된다. 추후 본 연구 결과를 토대로 비파괴 검사 시 방사선안전시설 내 종사자의 안전관리를 위한 보조자료로서 활용될 것으로 사료된다. The radiation source used for non-destructive testing have permeability and cause a scattered radiation through collisions of surrounding materials, which causes changes in the surrounding spatial dose. Therefore, this study attempted to evaluate and analyze the distribution of spatial dose by source in the working environment during the non-destructive test using monte carlo simulation. In this study, Using FLUKA, a simulation code, simulates <sup>60</sup>Co, <sup>192</sup>Ir, and <sup>75</sup>Se source used in non-destructive testing, The reliability of the source term was secured by comparing the calculated dose rate with the data of the Health and Physics Association. After that, a non-destructive test in the radiation safety facility(RT-room) was designed to evaluate the spatial dose according to the distance from the source. As a result of the spatial dose evaluation, <sup>75</sup>Se source showed the lowest dose distribution in the frontal position and <sup>60</sup>Co source showed a dose rate of about 15 times higher than that of <sup>75</sup>Se and about 2 times higher than that of <sup>192</sup>Ir. In addition, the spatial dose according to the distance tends to decrease according to the distance inverse square law as the distance from the source increases. Exceptionally, <sup>60</sup>Co, <sup>192</sup>Ir, and <sup>75</sup>Se sources confirmed a slight increase within 2 m of position. Based on the results of this study, it is believed that it will be used as supplementary data for safety management of workers in radiation safety facilities during non-destructive testing using radioactive isotopes.

      • PET/CT에서의 고관절 삽입물에 의한 인공물과 Metal Artifact Reduction Algorithm의 유용성에 대한 고찰

        박민수,함준철,조용인,강천구,박훈희,임한상,이창호,Park, Min Soo,Ham, Jun Cheol,Cho, Yong In,Kang, Chun Goo,Park, Hoon-Hee,Lim, Han Sang,Lee, Chang Ho 대한핵의학기술학회 2012 핵의학 기술 Vol.16 No.2

        CT를 기반으로 감쇠 보정이 시행되는 PET/CT 검사에서는 금속 삽입물에 의한 선속 경화 현상 (Beam Hardening Artifact)으로 인공물이 발생 된다. 이는 인접한 부위의 과대 혹은 과소 평가를 유발하는 감쇠 보정으로 인해 $^{18}F$-FDG의 섭취 변화를 가져오며 영상의 질과 비뇨 생식기 질환의 진단능을 저하시킨다. 따라서 본 연구에서는 PET/CT 영상의 질 향상을 위한 금속 인공물 저감 (Metal Artifact Reduction, MAR) algorithm 재구성방법의 유용성을 평가하고자 한다. 인공 고관절 삽입물에 대한 인공물을 평가하기 위해 SPECT/PET Phantom에 고관절 삽입물을 고정 하여 PET/CT를 진행했다. W/O MAR algorithm 영상과 MAR algorithm 영상에서 CT상에 나타나는 Bright streak, Dark streak, Metal과 Background의 영역에서의 표준화 섭취 계수(Standardized Uptake Value)의 변화를 분석하였다. 또한 본원에 내원한 고관절 전치환술을 시행한 15명의 환자에게서 W/O MAR algorithm과 MAR algorithm, 비 감쇠 보정 영상을 비교 평가하였다. W/O MAR algorithm 영상에서 SUV는 Bright streak 영역에서는 $0.98{\pm}0.48$ g/ml, Dark streak 영역에서는 $0.88{\pm}0.02$ g/ml, Metal 영역에는 $0.24{\pm}0.16$ g/ml, Background 영역은 $0.91{\pm}0.18$ g/ml로 측정되었다. 하지만 MAR algorithm 영상에서는 Bright streak 영역에서는 $0.88{\pm}0.49$ g/ml, Dark streak 영역은 $0.63{\pm}0.21$ g/ml, Metal 영역에서는 $0.06{\pm}0.07$ g/ml, Background는 $0.90{\pm}0.02$ g/ml로 측정되었다. MAR algorithm 적용 시 SUV가 평균적으로 감소 하였으며, W/O MAR algorithm 영상에서는 Bright streak영역에서 Background 보다 높게 측정되어 false positive uptake로 나타났으나 MAR algorithm 영상에서는 Background와 비슷한 농도와 SUV가 나타났고, false positive uptake가 관찰되지 않았다. 따라서 MAR algorithm을 적용하여 인공 고관절 삽입물 주변 조직의 과대 혹은 과소 감쇠 보정으로 인한 섭취의 증가를 줄일 수 있었다. 하지만 Dark streak 영역에서의 SUV 저하를 줄이기 위한 방안은 더욱 많은 연구가 이뤄져야 할 것이다. 고관절 삽입 인공물로 인해 발생하는 Bright streak 영역에서의 false positive uptake를 감소시키고 이와 인접해 있는 비뇨 생식기 질환에 W/O MAR algorithm과 MAR algorithm, 비 감쇠 보정 영상이 동시에 제공된다면 더욱 진단능을 향상 시킬 수 있으리라 생각된다. Purpose : PET/CT performed CT-based attenuation correction generates the beam hardening artifact by metallic implant. The attenuation correction causes over or underestimate of the area adjacent to metallic hip prosthetic material and change of $^{18}F$-FDG uptake. Also, the image quality and the diagnosability on genitourinary disease are reduced. Therefore, this study will evaluate the usefulness of MAR (Metal Artifact Reduction) algorithm method to improve the image quality on PET/CT. Materials and Methods : PET/CT was performed by fixing hip prosthesis in SPECT/PET phantom. In PET images with and Without MAR algorithm, the Bright streak, Dark streak, Metal region and Background area that appeared on CT were confirmed, and the change of each SUV (standardized uptake value) was analyzed. Also, in 15 patients who underwent total hip arthroplasty, each MAR algorithm and Without MAR algorithm and non attenuation correction was evaluated. Results : In PET image Without MAR algorithm, SUV of Bright streak region was $0.98{\pm}0.48$ g/ml; Dark streak region was $0.88{\pm}0.02$ g/ml; Metal region was $0.24{\pm}0.16$ g/ml, Background area was $0.91{\pm}0.18$ g/ml. In SUV of PET image with MAR algorithm, Bright streak region was $0.88{\pm}0.49$ g/ml, Dark streak region was $0.63{\pm}0.21$ g/ml, Metal region was $0.06{\pm}0.07$ g/ml, Background was $0.90{\pm}0.02$ g/ml. SUV generally decreased when applying MAR algorithm. In PET image Without MAR algorithm, SUVs of Bright region were higher than those measured in the Background, and it was false positive uptake. But, in PET image with MAR algorithm, SUVs of Bright region were similar to the Background, and false positive uptake disappeared. Conclusion : MAR algorithm could reduce an increase of $^{18}F$-FDG uptake due to attenuation correction in the hip surrounding tissue. However, decrease of SUV in Dark streak region should be considered in the future. Therefore, this study propose that the diagnostic accuracy can be improved in genitourinary diseases adjacent to metallic hip prosthesis, if provided PET images with and Without MAR algorithm, and non attenuation correction images at the same time.

      • KCI등재

        몬테카를로 시뮬레이션을 통한 중하전입자의 콘크리트 방사화 비교평가

        배상일(Sang-Il Bae),조용인(Yong-In Cho),김정훈(Jung-Hoon Kim) 대한방사선과학회(구 대한방사선기술학회) 2021 방사선기술과학 Vol.44 No.4

        A heavy particle accelerator is a device that accelerates particles using high energy and is used in various fields such as medical and industrial fields as well as research. However, secondary neutrons and particle fragments are generated by the high-energy particle beam, and among them, the neutrons do not have an electric charge and directly interact with the nucleus to cause radiation of the material. Quantitative evaluation of the radioactive material produced in this way is necessary, but there are many difficulties in actual measurement during or after operation. Therefore, this study compared and evaluated the generated radioactive material in the concrete shield for protons and carbon ions of specific energy by using the simulation code FLUKA. For the evaluation of each energy of proton beam and carbon ion, the reliability of the source term was secured within 2% of the relative error with the data of the NASA Space Radiation Laboratory(NSRL), which is an internationally standardized data. In the evaluation, carbon ions exhibited higher neutron flux than protons. Afterwards, in the evaluation of radioactive materials under actual operating conditions for disposal, a large amount of short-lived beta-decay nuclides occurred immediately after the operation was terminated, and in the case of protons with a high beam speed, more radioactive products were generated than carbon ions. At this time, radionuclides of 44Sc, 3H and 22Na were observed at a high rate. In addition, as the cooling time elapsed, the ratio of long-lived nuclides increased. For nonparticulate radionuclides, 3H, 22Na, and for particulate radionuclides, 44Ti, 55Fe, 60Co, 152Eu, and 154Eu nuclides showed a high ratio. In this study, it is judged that it is possible to use the particle accelerator as basic data for facility maintenance, repair and dismantling through the prediction of radioactive materials in concrete according to the cooling time after operation and termination of operation.

      • KCI등재

        혈관조영 및 중재적 시술 분야 내 종사자의 눈에 대한 선량평가

        김정훈 ( Jung-hoon Kim ),조용인 ( Yong-in Cho ) 한국방사선학회 2018 한국방사선학회 논문지 Vol.12 No.2

        혈관조영 및 중재적 방사선학 분야의 경우, 업무 특성상 눈의 방사선 피폭에 대한 위험성이 높다고 알려져 있으나, 현재 구분된 선량평가 및 관리가 이루어지지 않는 실정이다. 이에 본 연구에서는 시술 환경 내 종사자의 눈에 대한 선량평가 및 차폐분석을 위해 첫 번째로, 시술자가 주로 위치하는 지점을 선정하고, 두 경부 팬텀 눈의 외안각 지점에 포켓선량계를 부착한 뒤 눈에 대한 피폭선량을 평가하였고, 현재 상용화된 납 안경 착용 시 차폐효과를 산정하였다. 두 번째로, 실측과 동일한 기하학적 구조 내 모의실험을 통해 눈의 피폭선량에 대한 경향성 평가와 차폐효과에 대해 분석하였다. 그 결과, 선량계를 이용한 측정의 경우, 방사선 투시촬영 시간이 증가함에 따라 누적선량이 증가하였고, 또한 시술자의 위치에 따라 각기 다른 양상을 보였다. 모의실험의 경우, 수학적 팬텀 내 눈의 수정체의 경우 각막보다 약 1.1 ~ 1.3배 높은 선량분포를 나타내는 것을 확인하였고, 납 안경의 방호효과는 눈의 각 기관별로 최소 3.7 ~ 최대 21.4% 차폐효과를 보였다. In the field of angiography and interventional radiology, it is said that the risk of radiation exposure to the eyes is high due to the characteristics of work, but currently divided dose assessment and management are not carried out in reality. Therefore, in this study, in order to evaluate the dose of the operator in the surgical environment and to analyze the shields, firstly, we selected the point where the operator is mainly located, evaluated the exposure dose of the eye after attaching the pocket dosimeter to the lateral angle point of the head and neck phantom, and evaluate shielding effect when wearing lead glasses that is currently commercialized. Secondly, we evaluated the tendency of the exposure dose of the eye and the shielding effect through simulation in the same geometric structure as the actual measurement. As a result, in the case of measurement using a dosimeter, the cumulative dose increased with the increase of the fluoroscopic time, and the tendency was different according to the position of the operator. Simulation results show that the dose distribution of the eye lens in the mathematical phantom is about 1.1 ~ 1.3 times higher than that of the cornea. Also, The protective effect of the lead glasses showed a shielding effect of at least 3.7 ~ 21.4% in each eye.

      • KCI등재

        인터벤션 시술 시 환자의 선량감소를 위한 3D 프린팅 재료의 적용성 평가

        조용인(Cho Yong-In) 대한방사선과학회(구 대한방사선기술학회) 2020 방사선기술과학 Vol.43 No.3

        Interventional radiology is performed under real-time fluoroscopy, and patients are exposed to a wide range of exposures for a long period of time depending on the examination and procedure. However, studies on radiation protection for patients during an intervention are insufficient. This study aims to evaluate the doses exposed during the intervention and the applicability of 3D printing materials. The organ dose for each intervention site was evaluated using a monte carlo simulatio. Also, the dose reduction effect of the critical organs was calculated when using a shielding device using 3D printing materials. As a result, the organ dose distribution for each intervention site showed a lower dose distribution for organs located far from the x-ray tube. It was analyzed that the influence of scattered rays was higher in the superficial organs of the back of the human body where x-rays were incident. The dose reduction effect on the critical o rgan u sing t he 3 D printing shield s howed the highest testis among t he g onads, a nd in the case o f other organs, the dose reduction effect gradually decreased in the order of the eye, thyroid, breast, and ovary. Accordingly, it is judged that the 3D printed shield will be sufficiently usable as a shielding device for the radiation protection of critical organs.

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