• 제목/요약/키워드: Low-Dose Radiation

검색결과 937건 처리시간 0.027초

반복적 재구성 알고리즘과 관전류 자동 노출 조정 기법의 CT 영상 화질과 선량에 미치는 영향: 관상동맥 CT 조영 영상 프로토콜 기반의 팬텀 실험 (Effects of Iterative Reconstruction Algorithm, Automatic Exposure Control on Image Quality, and Radiation Dose: Phantom Experiments with Coronary CT Angiography Protocols)

  • 하성민;정성희;장혁재;박은아;심학준
    • 한국의학물리학회지:의학물리
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    • 제26권1호
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    • pp.28-35
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    • 2015
  • 본 논문에서는 반복적 구성 기법과 관전류 노출자동조절 기법이 영상의 화질과 방사선량에 미치는 영향을 관상동맥 전산화단층촬영 혈관조영 영상(coronary computed tomography angiography, CCTA)을 대상으로 팬텀 실험에 기반하여 평가하고자 한다. 이를 위하여 미국 의학물리학회(American Association of Physics in Medicine) 표준의 성능 평가 팬텀을 320 다중검출열 CT로써 촬영하였다. 80 kVp, 100 kVp, 120 kVp의 관전압에 있어서, 관전류 노출자동조절 기법은 저선량 목표 표준편차(SD=44)와 고선량(목표 표준편차=33)의 두 가지 설정으로써 촬영하였다. 재구성 변수로서는 필터보정 역투영(FBP)와 반복적 재구성 방법을 설정하여, 전부 12개의 재구성 영상을 획득하였다(12=3 (80, 100, 120 kVp)${\times}2$ (저선량(목표SD=44), 고선량(목표SD=33))${\times}2$ (필터보정역투영, 반복적 재구성). 영상의 화질은 잡음의 세기(표준편차), 변조전달함수, 대조대잡음비(CNR)에 의하여 평가하였으며, 관전압과 관전류 노출자동조절 기법에서의 목표 선량과 대소 및 재구성 기법의 선택이 화질과 방사선량에 미치는 영향을 관찰하였다. 반복적 재구성 기법은 필터보정역투영 기법보다 영상 잡음을 대폭 감소시켰으며 이는 저선량의 경우 더욱 뚜렷하였다. 즉, 잡음의 세기는 관전류 노출자동조절의 설정이 고선량 (목표SD=33)과 저선량(목표SD=44)인 경우, 각각 평균 38%와 평균 46% 감소하였다. 반복적 재구성 기법에 의하여, 변조전달 함수에 의한 공간적 해상도의 평가에 있어서 미약한 감소를 보였으나, 이로써 잡음 저감과 대조대잡음비(CNR)에 있어서의 현저한 개선을 상쇄할 정도의 영향에는 미치지 못 하였다. 결과적으로, 관상동맥 전산화단층촬영 혈관조영 영상의 획득에서 있어서, 반복적 재구성 기법과 관전류 노출자동조정 기법을 동시에 사용하는 것은 영상의 화질을 개선하면서 공간적 해상도의 저하 등 그 부작용은 최소화함으로써, 합리적으로 획득 가능한 한 최소한의 선량 (ALARA)의 원칙에 충실한 실제 임상적 효과를 의미한다고 기대할 수 있다.

디지털 위성 중계기용 SHF 대역 저잡음 증폭장치 설계 및 구현에 대한 연구 (The Study on the Design and Implementation of SHF band Low Noise Amplifier of Digital Satellite Communication)

  • 김기중
    • 한국전자통신학회논문지
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    • 제11권12호
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    • pp.1159-1164
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    • 2016
  • 본 연구는 디지털위성중계기용 SHF 대역 저잡음증폭장치의 설계 및 구현에 대해 기술하였다. 잡음지수 최소화를 위하여 저잡음 증폭소자인 HEMT(: High Electron Mobility Transistor)소자를 적용하였고, 우주환경에 대한 사전 시뮬레이션 분석을 통하여 장비 오동작 가능성을 최소화 시켰다. 발사환경 시 발생하는 진동 및 우주방사능에 의한 TID(: Total Ionizing Dose)에 대한 시뮬레이션을 통해 신뢰성 있는 저잡음증폭장치를 설계하였으며, 제작 후 주요 성능지표에 대해 만족여부 확인 및 사전 성능 시뮬레이션 결과와 비교하였다.

원자력시설 해체 작업자 보호 및 사고 예방을 위한 가상현실 기반의 훈련 시스템 (The training system based on virtual environments to protect workers and to prevent incidents and accidents during decommissioning of nuclear facilities)

  • 정관성;문제권;최병선;윤태만
    • 한국재난정보학회:학술대회논문집
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    • 한국재난정보학회 2015년 정기학술대회
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    • pp.294-297
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    • 2015
  • Decommissioning of nuclear facilities should be accomplished by assuring the safety of workers because decommissioning activities of nuclear facilities are under high radioactivity and work difficulty. It is necessary that before decommissioning, the radiation exposure dose of workers has to be evaluated and assessed under the principle of ALARA (as low as reasonably achievable). Furthermore, to improve the proficiency of decommissioning environments, method and system need to be developed. The legacy methods of exposure dose measurement and assessment had the limitations to modify and simulate the exposure dose to workers prior to practical activities because those should be accomplished without changes of working routes under predetermined scenarios. To simulate a lot of decommissioning scenarios, decommissioning environments were designed in virtual reality. To simulate and assess the exposure dose to workers, human model also was designed in virtual environments. These virtual decommissioning environments made it possible to real-time simulate and assess the exposure dose to workers. It can be concluded that this system is able to protect from accidents and enable workers to improve his familiarization about working environments. It is expected that this system can reduce human errors because workers are able to improve the proficiency of hazardous working environments due to virtual training like real decommissioning situations. In the end, the safety during decommissioning of nuclear facilities will be guaranteed under the principle of ALARA.

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RESRAD 코드를 활용한 규제해제 폐기물 소각처분에 대한 안정성 평가 (Safety Assessment on the Incineration Disposal of Regulation Exempt Waste by RESRAD Code)

  • 김희경;한상욱;박수리;김병직
    • 대한방사선기술학회지:방사선기술과학
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    • 제41권1호
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    • pp.67-73
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    • 2018
  • In this paper, risk assessment was conducted to verify self - disposal requirements by landfill for exempted incineration ash by using Resrad Ver.6.5 computer code. The result of risk assessment by landfill for the incineration by-product is that individual dose is $6.91{\times}10^{-2}{\mu}Sv\;y-1$ and collective dose is $3.475{\times}10^{-7}man-Sv\;y-1$. It proved that the result meets reference dose of individual dose $10{\mu}Sv\;y-1$ and collective dose 1 man-Sv y-1 for general public. According to the current 'Nuclear Safety Commission Notice [No. 2014-3]', it states that the exempted wastes can be disposed of by incineration, landfill and recycling. However, most of recently documents and papers related to exempted wastes are disposed of by landfill and recyling and it could not confirm the case of exempt by incineration. If the national consensus is derived and treating the waste by using process of incineration is activated, it could be considered to treat low level of radiation wastewater and activated carbon excluded from exempted waste because of nuclide $^3H$ and $^{14}C$.

단순 디지털 촬영과 저선량 CT의 폐기종 소견으로부터 폐쇄성 폐기능 장애 위험 비교 (Evaluation of Obstructive Pulmonary Function Impairment Risks in Pulmonary Emphysema Detected by Low-Dose CT: Compared with Simple Digital Radiography)

  • 이원정;이정오;최병순
    • Tuberculosis and Respiratory Diseases
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    • 제71권1호
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    • pp.37-45
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    • 2011
  • Background: Pulmonary emphysema (PE) is major cause of obstructive pulmonary function impairment (OPFI), which is diagnosed by spirometry. PE by high resolution CT is known to be correlated with OPFI. Recently, low dose CT (LDCT) has been increasingly used for screening interstitial lung diseases including PE. The aim of this study was to evaluate OPFI risks of subjects with PE detected by LDCT compared with those detected by simple digital radiography (SDR). Methods: LDCT and spirometry were administered to 266 inorganic dust exposed retired workers, from May 30, 2007 to August 31, 2008. This study was approved by our institutional review board and informed consent was obtained. OPFI risk was defined as less than 0.7 of forced expiratory volume in one second (FEV1)/forced vital capacity (FVC), and relative risk (RR) of OPFI of PE was calculated by multiple logistic regression analysis. Results: Of the 266 subjects, PE was found in 28 subjects (10.5%) by LDCT and in 11 subjects (4.1%) by SDR; agreement was relatively low (kappa value=0.32, p<0.001). FEV1 and FEV1/FVC were significantly different between PE and no PE groups determined by either SDR or LDCT. The differences between groups were larger when the groups were divided by the findings of SDR. When PE was present in either LDCT or SDR assays, the RRs of OPFI were 2.34 and 8.65, respectively. Conclusion: LDCT showed significantly higher sensitivity than SDR for detecting PE, especially low grade PE, in which pulmonary function is not affected. As a result, the OPFI risks in the PE group by LDCT was lower than that in the PE group by SDR.

CT 영상의 화질개선을 위한 이중트리복합웨이블릿의 적용 (Application of Dual Tree Complex Wavelet for Performance Improvement of CT Images)

  • 최석윤
    • 한국방사선학회논문지
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    • 제13권7호
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    • pp.941-946
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    • 2019
  • 환자의 진단 및 치료를 결정할 때 전산화단층촬영 (computed tomography; CT)은 우수한 해부학 정보를 제공하기 때문에 진단에 큰 도움이 되어 있다. 그에 따른 사용빈도가 증가하고 있으며, 활용 및 응용범위도 확대되어가는 추세이다. 저관전압을 사용해서 CT 검사를 하면 노이즈가 증가한다. 기존의 여러 연구에서는 영상재구성법에 대한 노출조건을 조절하는 방법 등을 시도해서 최적의 화질을 찾는 방법을 찾고 있으나 근본적 문제해결은 되지 못한다. 입력 영상의 신호를 유지하고 노이즈만을 최대한 제거하기 위해서 이중 트리웨이블릿 알고리즘을 적용하였다. 실험결과 100kVp, 회전시간 0.5sec의 영상에서 complex oriented 2d 방을 사용 할 경우 노이즈는 8.53에서 4.51로 줄어들었다. 본 연구를 통해서 저관전압 두부 CT에서 발생하는 높은 수준의 노이즈를 최적의 노이즈제거 알고리즘으로 노이즈를 제거하고 환자선 량을 낮출 수 있었다. 본 연구결과를 임상에서 사용 시 저선량의 CT 사용이 가능하고 환자 피폭을 줄일 것으로 판단한다.

Shielding design and analyses of the cold neutron guide hall for the KIPT neutron source facility

  • Zhong, Zhaopeng;Gohar, Yousry
    • Nuclear Engineering and Technology
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    • 제50권6호
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    • pp.989-995
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    • 2018
  • Argonne National Laboratory of the United States and Kharkov Institute of Physics and Technology (KIPT) of Ukraine have cooperated on the development, design, and construction of a neutron source facility. The facility was constructed at Kharkov, Ukraine, and its commissioning process is underway. The facility will be used for researches, producing medical isotopes, and training young nuclear specialists. The neutron source facility is designed with a provision to include a cryogenically cooled moderator system-a cold neutron source (CNS). This CNS provides low-energy neutrons, which will be used in the scattering experiment and material structures analysis. Cold neutron guides, coated with reflective material for the low-energy neutrons, will be used to transport the cold neutrons to the experimental site. The cold neutron guides would keep the cold neutrons within certain energy and angular space concentrated inside, while most of the gamma rays and high-energy neutrons are not affected by the cold neutron guides. For the KIPT design, the cold neutron guides need to extend several meters outside the main shield of the facility, and curved guides will also be used to remove the gamma and high-energy neutron. The neutron guides should be installed inside a shield structure to ensure an acceptable biological dose in the facility hall. Heavy concrete is the selected shielding material because of its acceptable performance and cost. Shield design analysis was carried out for the CNS guide hall. MCNPX was used as the major computation tool for the design analysis, with neutron and gamma dose calculated separately. Weight windows variance reduction technique was also used in the shield design. The goal of the shield design is to keep the total radiation dose below the $5.0{\mu}Sv/hr$ guideline outside the shield boundary. After a series of iterative MCNPX calculations, the shield configuration and parameters of CNS guide hall were determined and presented in this article.

Radiation Therapy for Primary Eyelid Cancers in Tunisia

  • Belaid, A;Nasr, C;Benna, M;Cherif, A;Jmour, O;Bouguila, H;Benna, F
    • Asian Pacific Journal of Cancer Prevention
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    • 제17권7호
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    • pp.3643-3646
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    • 2016
  • Management of eyelid cancers is based on surgery and/or radiotherapy (RT). The treatment objective is to control tumors with acceptable functional and esthetic outcomes. The aim of this study was to evaluate the results of radiation therapy in management of epithelial eyelid cancers, reviewing retrospectively the clinical records of patients treated in our institution from January 1989 to December 2013. We focused on clinical and histological features, treatment characteristics, tolerance and disease control. One hundred and eight patients (62 men and 46 women) were enrolled, with a mean age of 61 years [ranges 15-87]. The most frequent tumor location was the inner canthus (42.6%). Median tumor size was 21 mm [ranges 4-70]. Histological type was basal cell carcinoma in 88 cases (81.5%), squamous cell carcinoma in 16 (14.8%) and sebaceous carcinoma in 4 (3.7%). Radiation therapy was exclusive in 67 cases (62%) and post-operative for positive or close margins in the remaining cases. Kilovoltage external beam radiotherapy (KVRT) was used in 63 patients (58.3%) and low-dose-rate interstitial brachytherapy in 37 (34.3%). Eight (7.4%) were treated with cobalt or with a combination of KVRT-cobalt, KVRT-electron beams, KVRT-brachytherapy or cobalt-electron beams. The total delivered radiation doses were 70 Gy (2 Gy/fraction) in 62 patients (57.4%), 66 Gy (2 Gy/fraction) in 37 (34.3%) and 61.2 Gy (3.4Gy/fraction) in 9 (8.3%). After a median follow-up of 64 months, we noted 10 cases of local recurrences(9.2%): 7 after exclusive and 3 after post-operative RT. No local recurrence occurred in patients treated with brachytherapy. Actuarial 5-year local recurrence-free rate, disease-free survival and overall survival were respectively 90%, 90% and 97%. T-stage was found to be a significant factor for recurrence (p=0.047). All acute radiation-related reactions were scored grade I or II. Delayed effects were eye watering in 24 cases (22.2%), eye dryness in 19 (17.6%), unilateral cataract in 7 (6.4%) and ectropion in 4 (3.7%). Radiation therapy and especially brachytherapy is an efficient treatment of eyelid cancers, allowing eye conservation and functional preservation with good local control rates and acceptable toxicity.

수술 중 C-Arm Neutral AP 검사 시 조절인자에 따른 피폭선량 및 화질비교(L-Spine AP검사를 기준으로) (Study of Factors Controlling Exposure Dose and Image Quality of C-arm in Operation Room according to Detector Size of It (Mainly L-Spine AP Study))

  • 최성현;조황우;동경래;정운관;최은진;송하진
    • 방사선산업학회지
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    • 제9권2호
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    • pp.85-90
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    • 2015
  • Purpose: Time of operation has been reduced and accuracy of operation has been improved since C-arm, which offer real-time image of patient, was introduced in operation room. However, because of the contamination of patient, C-arm could not be used more appropriately. Therefore, this study is to know factors of controlling exposure dose, image quality and the exposed dose of health professional in operation room. Materials and methods: Height of Wilson frame (bed for operation) was fixed at 130 cm. Then, Model 76-2 Phantom, which was set by assembling manual of Fluke Company, was set on the bed. Head/Spine Fluoroscopy AEC mode was set for exposure condition. According to detector size of C-arm, the absorbed dose per min was measured in the 7 steps OFD (cm) from 10 cm to 40 cm (10, 15, 20, 25, 30, 35, 40 cm). In each step of OFD, the absorbed dose per min of same diameter of collimation was measured. Moreover, using Nero MAX Model 8000, exposure dose per min was measured according to 3 step of distance from detector (20 cm, 60 cm, 100 cm). Finally, resolution was measured by CDRH Disc Phantom and magnification of each OFD was measured by aluminum stick bar. Result: According to detector size of C-arm, difference of absorbed dose shows that the dose of 20 cm OFD is 1.750 times higher than the dose of 40 cm OFD. It means that the C-arm, which has smaller size of detector, shows the bigger difference of absorbed dose per min (p<0.05). In the difference of absorbed dose in the same step of OFD (from 20 cm to 40 cm), the absorbed dose of 9 inch detect or C-arm was 1.370 times higher than 12 inch' s (p<0.05). When OFD was set to 20 cm OFD, the absorbed dose of non-collimation case was approximately 0.816 times lower than the absorbed dose of collimation cases (p<0.05). When the distance was 20 cm from detector, exposed does includes first-ray and scatter-ray. When the distance was 60 cm and 100 cm from detector, exposed does includes just scatter-ray. So, there was the 2.200 times difference of absorbed does. Finally, when OFD was increased, spatial resolution was 4 to 5 step was increased. However, low contrast resolution was not relative. Moreover, there was 1.363 times difference of magnification (p<0.05). Conclusion: When C-Arm is used, avoiding contamination of patient is more important factor than reducing exposed dose of health professional in operation room. Just controlling exposure time is just way to reduce the exposed does of workers. However, in the case, non-probability influence could be occurred. Therefore, this study proved that the exposed dose will be reduced if the factors such as using small detector size of C-arm, setting OFD from 20 cm to 25 cm and non-collimating. Moreover, dose management of C-arm in the non-interesting area will be considered additionally.

전자선 치료 시 Bolus를 적용한 경우 표면선량의 Treatment Planning System(TPS) 계산 값과 실제 측정값의 비교 (Comparison of Treatment Planning System(TPS) and actual Measurement on the surface under the electron beam therapy with bolus)

  • 김병수;박주영;박병석;송용민;박병수;송기원
    • 대한방사선치료학회지
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    • 제26권2호
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    • pp.163-170
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    • 2014
  • 목 적 : 표재성 종양 치료를 위하여 선택한 전자선은 bolus와 동시에 사용할 경우 표면선량에 급격한 변화를 보이게 되며 이는 치료결과의 중요한 변수로 작용할 수 있다. 이에 본 논문에서는 전자선 치료에서 bolus가 적용될 경우 표면선량을 좌우할 수 있는 4 가지 변수에 따른 치료계획시스템(Treatment Planning System, TPS)의 표면선량 계산 값과 실제 측정값을 비교 분석하였다. 대상 및 방법 : 치료계획시스템(Pinnacle 9.2, philips, USA)과 실제 측정값을 비교하기 위하여 실제 치료 시 주로 발생되는 4가지 변수(A: bolus 두께 - 3, 5, 10 mm, B: 조사야 크기 - $6{\time}6$, $10{\time}10$, $15{\time}15cm2$, C: 에너지 - 6, 9, 12 MeV, D: 겐트리 각도 - 0, $15^{\circ}$)를 설정하였다. 16 cm 두께의 solid water phantom을 이용하여 bolus(Action Products, USA) 없이 전산화단층촬영(lightspeed ultra 16, General Electric, USA)을 시행하였고 치료 계획은 TPS 상에서 각각 3, 5, 10 mm bolus를 생성하여 A, B, C, D를 조합한 총 54개의 beam으로 계획하였다. 이때 SSD 100 cm, 300 MU를 조사하였고 TPS와 실제 측정값을 비교 분석하기 위해 EBT3 film(International Specialty Products, NJ, USA)을 이용해 iso-center에 위치시켜 2회 반복 측정하였다. 측정된 film은 디지털 평판 스캐너(Expression 10000XL, EPSON, USA)와 선량 농도 분석시스템(Complete Version 6.1, RIT, USA)을 사용하여 각각의 평균값과 표준편차 값으로 분석하였다. 결 과 : bolus 두께에 따른 값은 3, 5, 10 mm에서 실제 측정된 값이 TPS의 계산 값보다 각각 101.41%, 99.58%, 101.28%, 표준편차는 각각 0.0219, 0.0115, 0.0190 으로 나타났다. 조사야 크기에 따른 실제 측정값은 $6{\time}6$, $10{\time}10$, $15{\time}15cm2$ 각각 계산 값에 비해 99.63%, 101.40%, 101.24%, 표준편차는 0.0138, 0.0176, 0.0220 으로 나타났다. 에너지에 따른 값은 상대적으로 6, 9, 12 MeV 각각 99.72%, 100.60%, 101.96%, 표준편차는 0.0200, 0.0160, 0.0164로 나타났다. 빔 각도에 따른 실제 측정값은 계산된 값에 비하여 0, $15^{\circ}$에서 각각 100.45%, 101.07%, 표준편차는 0.0199, 0.0190 으로써 $15^{\circ}$에서 $0^{\circ}$보다 0.62% 높게 측정되었다. 결 론 : 본 논문에서 사용한 변수에 따른 계산 값과 측정값을 분석한 결과 5 mm bolus, $6{\time}6cm2$ 조사야, 저 에너지 전자선, $0^{\circ}$ 겐트리 각도에서 TPS로 계산한 값이 측정값에 더 가까웠지만 다른 변수를 적용한 비교에서도 최대 2% 오차범위 내에 포함되는 결과를 보였다. 전자선과 bolus를 동시에 사용하는 경우 본 논문에서 선택된 변수의 범위를 벗어난다면 각각의 변수에 따라 실제 측정값이 TPS와 달라질 수 있기 때문에 정확한 표면선량에 대한 QA를 반드시 실시해야 한다.