• 제목/요약/키워드: exposure model evaluation

검색결과 169건 처리시간 0.023초

흉부CT 검사 시 HRCT 영상 재구성의 유용성 (Usefulness Evaluation of HRCT using Reconstruction in Chest CT)

  • 박성민;김긍식;강성민;유병규;이기배
    • 대한디지털의료영상학회논문지
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    • 제17권1호
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    • pp.13-18
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    • 2015
  • Purpose : Skip the repetitive HRCT axial scan in order to reduce the exposure of patients during chest HRCT scan, Helical Scan Data into a reconstructed image, and exposure of the patient change and visually evaluate the usefulness of the HRCT images. Materials and method : Patients were enrolled in the survey are 50 people who underwent chest CT scans of patients who presented to the hospital from January 2015 to March 2015. 50 people surveyed 22 people men and 28 people women people showed an average distribution of 30 to 80 years age was 48 years. 50 patients to Somatom Sensation 64 ch (Siemens) model with 120 kVp tube voltage to a reference mAs tube current to mAs (Care dose, Siemens) as a whole, including the lungs and the chest CT scan was performed. Scan upon each patient CARE dose 4D (Automatic exposure control, Siemens Medical Solution Erlangen, Germany) was to maintain the proper radiation dose scan every cross-section through a device that automatically adjusts the tube current of. CT scan is the rotation time of the Tube slice collimation, slice width 0.6 mm, pitch factor was made under the terms of 1.4. CT scan obtained after the raw data (raw data) to the upper surface of the axial images and coronal images for each slice thickness 1 mm, 5 mm intervals in the high spatial frequency calculation method (hight spatial resolution algorithm, B60 sharp) was the use of the lung window center -500 HU, windows were reconstructed into images in the interval -1000 HU to see. Result : 1. Measure the total value of DLP 50 patients who proceed to chest CT group A (Helical Scan after scan performed with HRCT) and group B (Helical Scan after the HR image reconstruction to the original data) compared with the group divided, analysis As a result of the age, but show little difference for each age group it had a decreased average dose of about 9%. 2. A Radiation read the results of the two Radiologist and a doctor upper lobe and middle lobe of the lung takes effect the visual evaluation is not a big difference between the two images both, depending on the age of the patient, especially if the blood vessels of the lower lobe (A: 3.4, B: 4.6) and bronchi(A: 3.8, B4.7) image shake caused by breathing in anxiety (blurring lead) to the original data (raw data) showed that the reconstructed image is been more useful in diagnostic terms. Conclusion : Scan was confirmed a continuous, rapid motion video to get Helical scan is much lower lobe lung reduction in visual blurring, Helical scan data to not repeat the examination by obtaining HRCT images reorganization reduced the exposure of the patient.

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일부 제조업 사업장의 사무 및 공장동에서의 라돈농도 수준 및 유효선량 평가 (Evaluation of Effective Dose and Exposure Levels of Radon in Office and Plant Buildings)

  • 정은교;김기웅
    • 한국산업보건학회지
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    • 제27권1호
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    • pp.38-45
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    • 2017
  • Objectives: Radon may be second only to smoking as a cause of lung cancer. Radon is a colorless, tasteless radioactive gas that is formed via the radioactive decay of radium. Therefore, radon levels can build up based on the amount of radium contained in construction materials such as phospho-gypsum board or when ventilation rates are low. This study provides our findings from evaluation of radon gas at facilities and offices in an industrial complex. Methods: We evaluated the office rooms and processes of 12 manufacturing factories from May 14, 2014 to September 23, 2014. Short-term data were measured by using real-time monitoring detectors(Model 1030, Sun Nuclear Co., USA) indoors in the office buildings. The radon measurements were recorded at 30-minute intervals over approximately 48 hours. The limit of detection of this instrument is $3.7Bq/m^3$. Also, long-term data were measured by using ${\alpha}-track$ radon detectors(${\alpha}-track$, Rn-tech Co., Korea) in the office and factory buildings. Our detectors were exposed for over 90 days, resulting in a minimum detectable concentration of $7.4Bq/m^3$. Detectors were placed 150-220 cm above the floor. Results: Radon concentrations averaged $20.6{\pm}17.0Bq/m^3$($3.7-115.8Bq/m^3$) in the overall area. The monthly mean concentration of radon by building materials were in the order of gypsum>concrete>cement. Radon concentrations were measured using ${\alpha}-track$ in parallel with direct-reading radon detectors and the two metric methods for radon monitoring were compared. A t-test for the two sampling methods showed that there is no difference between the average radon concentrations(p<0.05). Most of the office buildings did not have central air-conditioning, but several rooms had window- or ceiling-mounted units. Employees could also open windows. The first, second and third floors were used mainly for office work. Conclusions: Radon levels measured during this assessment in the office rooms of buildings and processes in factories were well below the ICRP reference level of $1,000Bq/m^3$ for workplaces and also below the lower USEPA residential guideline of $148Bq/m^3$. The range of indoor annual effective dose due to radon exposure for workers working in the office and factory buildings was 0.01 to 1.45 mSv/yr. Construction materials such as phospho-gypsum board, concrete and cement were the main emission sources for workers' exposure.

인공신경 회로망을 이용한 압력용기 중성자 조사취화 평가 (Neutron Flux Evaluation on the Reactor Pressure Vessel by Using Neural Network)

  • 유춘성;박종호
    • Journal of Radiation Protection and Research
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    • 제32권4호
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    • pp.168-177
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    • 2007
  • 본 논문에서는 노심설계 단계에서 선정된 다양한 노심 장전모형 중에서 압력용기 중성자 조사취화 관점에서 가장 최적의 노심 장전모형을 선정할 수 있도록 신속하게 압력용기 취약위치에 대한 속중성자속을 예측할 수 있는 방법을 제시하였다. 인공신경회로망 기법을 통해 노심 반경방향 및 축방향 출력분포만을 이용하여 압력용기내벽 취약위치에서의 중성자 스펙트럼을 신속하게 평가할 수 있도록 중성자속 가중치를 생산하였고 데이터베이스를 구축하였다. 이 방법은 중성자 수송코드를 이용한 수송계산을 직접 수행하지 않고도 신속하게 압력용기 위치에서의 중성자 조사환경을 평가할 수 있으며 소송코드 결과와 비교하여 상대오차 3.4%이내의 정확도를 보였다.

Technical Evaluation of Engineering Model of Ultra-Small Transmitter Mounted on Sweetpotato Hornworm

  • Nakajima, Isao;Muraki, Yoshiya;Mitsuhashi, Kokuryo;Juzoji, Hiroshi;Yagi, Yukako
    • Journal of Multimedia Information System
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    • 제9권2호
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    • pp.145-154
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    • 2022
  • The authors are making a prototype flexible board of a radio-frequency transmitter for measuring an electromyogram (EMG) of a flying moth and plan to apply for an experimental station license from the Ministry of Internal Affairs and Communications of Japan in the summer of 2022. The goal is to create a continuous low-dose exposure standard that incorporates scientific and physiological functional assessments to replace the current standard based on lethal dose 50. This paper describes the technical evaluation of the hardware. The signal of a bipolar EMG electrode is amplified by an operational amplifier. This potential is added to a voltage-controlled crystal oscillator (27 MHz, bandwidth: 4 kHz), frequency-converted, and transmitted from an antenna about 10 cm long (diameter: 0.03 mm). The power source is a 1.55-V wristwatch battery that has a total weight of about 0.3 g (one dry battery and analog circuit) and an expected operating time of 20 minutes. The output power is -7 dBm and the effective isotropic radiated power is -40 dBm. The signal is received by a dual-whip antenna (2.15 dBi) at a distance of about 100 m from the moth. The link margin of the communication circuit is above 30 dB within 100 m. The concepts of this hardware and the measurement data are presented in this paper. This will be the first biological data transmission from a moth with an official license. In future, this telemetry system will improve the detection of physiological abnormalities of moths.

디지털 방사선 시스템(DR)의 조사시간 변화 시 방사선 출력과 영상 화질의 안정성 분석을 통한 최적화된 파라미터의 임상 적용 모델 평가 (Evaluation of Clinical Application Model of Optimized Parameter through Analysis of Stability of Radiation Output and Image Quality when Exposure Time Change of Digital Radiography (DR))

  • 황준호;최지안;김현수;이경배
    • 한국방사선학회논문지
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    • 제14권2호
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    • pp.139-148
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    • 2020
  • 본 연구는 조사시간 변화가 방사선 출력과 영상 화질의 안정성에 미치는 영향을 분석하여 디지털 방사선 시스템의 성능을 최적화하는 방법을 제시하고자 하였다. 실험방법은 조사시간을 50 msec, 100 msec, 200 msec, 400msec로 변화시켜 복부와 골반부에 사용된 파라미터들의 백분율 평균오차(PAE; Percentage Average Error), 시간-방사선량 곡선, 신호 대 잡음비(SNR; Signal to Noise Ratio), 대조도 대 잡음비(CNR; Contrast to Noise Ratio), 분석하여 파라미터의 정상 작동 여부, 방사선 출력, 영상 화질을 평가하였다. 그 결과 실험에 사용된 파라미터들은 모두 정상 범위의 백분율 평균 오차를 보였고, 조사시간은 짧게 적용할수록 디지털 방사선 시스템의 방사선 출력과 영상 화질의 안정성이 저하하였다. 결론적으로 100 msec ~ 200 msec의 조사시간을 적용하여 방사선 출력과 영상 화질을 안정적으로 유지했을 때 디지털 방사선 시스템의 성능을 최적화할 수 있음을 알 수 있었다.

도로 교통소음의 전파특성 연구 - 인체에 미치는 영향에 대한 고찰 - (The propagation characteristics of road traffic noise - with respect to human response -)

  • 장호경
    • 한국의학물리학회지:의학물리
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    • 제11권1호
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    • pp.19-27
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    • 2000
  • 본 연구에서는 평탄한 지면 위의 도로 교통소음의 전파특성을 해석하고자 점음원과 쌍극자음원을 모델로 사용하였으며, 연속 지표면 음향임피던스에 대한 초과감쇠를 실험으로 조사하였다 연구결과 수음점이 지표면 가까이 있을 때, 도로 교통소음의 전파특성은 소음 전파경로 상의 지표면 음향임피던스에 크게 영향을 받는 것을 확인하였다. 또한 진행 차량으로부터 측정한 등가에너지레벨의 거리별 감쇠값을 이용하여 등음압곡선을 해석하였다 그리고 도로 교통소음이 인체에 미치는 영향을 조사하고자 초저주파 소음에 대한 응답특성, 깊은 수면율과 잠을 깨는 비율에 대한 연속적인 교통소음의 .효과, 연령과 소음폭로등 다양한 변수에 대하여 청력손실과 청감민감도 변화 등을 고찰하였다 해석결과 과도한 소음은 일시적 청력손실의 원인이며, 폭로가 길어지거나 강력하면 영구적 청력손실의 원인이 될 수 있음을 확인하였다.

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Pharmacodynamics of CKD-602 (Belotecan) in 3D Cultures of Human Colorectal Carcinoma Cells

  • Lee Sin-Hyung;Al-Abd Ahmed M.;Park Jong-Kook;Cha Jung-Ho;Ahn Soon-Kil;Kim Joon-Kyum;Kuh Hyo-Jeong
    • Biomolecules & Therapeutics
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    • 제14권2호
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    • pp.90-95
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    • 2006
  • CKD-602 exerts its antitumor effect via inhibition of topoisomerase I in cancer cells. Multicellular spheroid (MCS) and Multicellular layers (MCLs) are known as in vitro 3-dimensional models which closely represent tumor conditions in vivo. In order to investigate the potential of CKD-602 against human colorectal tumors, we evaluated the anti-proliferative activity and penetration ability of CKD-602 in MCS and MCL cultures of DLD-l human colorectal cancer cells, respectively. The maximum effects($E_{max}$) induced by CKD-602 were significantly lower in MCS compared to monolayers (48% vs 92%). With prolonged drug exposure, the $IC_{50's}$ of CKD-602 decreased to $23.5{\pm}1.0nM$ in monolayers after 24 h exposure and $42.3{\pm}1.7nM$ in MCS after 6 days, respectively. However, no further increase in effect was observed for exposure time longer than growth doubling time (Td) in both cultures. Activity of CKD-602 was significantly reduced after penetration through MCL and also with cell-free insert membrane. In conclusion, CKD-602 showed significantly decreased anti-proliferative activity in 3D cultures (MCS) of human colorectal cancer cells. Tumor penetration of CKD-602 could not be determined due to loss of activity after penetration through cell free insert membrane, which warrants further evaluation using a modified model.

콘크리트 교량 상태평가를 위한 딥러닝 기반 손상 탐지 프로토타입 개발 (Development of Deep Learning-Based Damage Detection Prototype for Concrete Bridge Condition Evaluation)

  • 남우석;정현준;박경한;김철민;김규선
    • 대한토목학회논문집
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    • 제42권1호
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    • pp.107-116
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    • 2022
  • 최근 안전점검자가 접근성 문제로 점검이 어려운 교량 부재의 상태평가를 위해 영상분석 기반의 시설물 점검 기법연구가 활발히 진행 중이다. 본 논문은 교량을 대상으로 딥러닝 기반 영상정보에 대해서 상태평가 연구를 진행하였고 이에 대한 평가 프로그램(프로토타입)을 개발하였다. 딥러닝 기반 교량 손상탐지 프로토타입을 개발하기 위해 딥러닝 모델 중 손상 검출 및 정량화가 가능한 의미론적 분할 모델인 Mask-RCNN를 적용하였고 학습데이터 6,540장(오픈 데이터 포함)과 손상유형에 적합한 레이블링을 구성하였다. 모델링에 대한 성능검증한 결과, 콘크리트 균열, 박리/박락, 철근노출과 도장 박리에 대한 정밀도(precision)는 95.2 %, 재현율(recall)은 93.8 % 나타내었다. 또한, 교량 콘크리트 부재 손상율을 이용하여 콘크리트 균열 실 데이터를 2차 성능검증 하였다.

A Method to Protect Mine Workers in Hot and Humid Environments

  • Sunkpal, Maurice;Roghanchi, Pedram;Kocsis, Karoly C.
    • Safety and Health at Work
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    • 제9권2호
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    • pp.149-158
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    • 2018
  • Background: Work comfort studies have been extensively conducted, especially in the underground and meteorological fields resulting in an avalanche of recommendations for their evaluation. Nevertheless, no known or universally accepted model for comprehensively assessing the thermal work condition of the underground mine environment is currently available. Current literature presents several methods and techniques, but none of these can expansively assess the underground mine environment since most methods consider only one or a few defined factors and neglect others. Some are specifically formulated for the built and meteorological climates, thus making them unsuitable to accurately assess the climatic conditions in underground development and production workings. Methods: This paper presents a series of sensitivity analyses to assess the impact of environmental parameters and metabolic rate on the thermal comfort for underground mining applications. An approach was developed in the form of a "comfort model" which applied comfort parameters to extensively assess the climatic conditions in the deep, hot, and humid underground mines. Results: Simulation analysis predicted comfort limits in the form of required sweat rate and maximum skin wettedness. Tolerable worker exposure times to minimize thermal strain due to dehydration are predicted. Conclusion: The analysis determined the optimal air velocity for thermal comfort to be 1.5 m/s. The results also identified humidity to contribute more to deviations from thermal comfort than other comfort parameters. It is expected that this new approach will significantly help in managing heat stress issues in underground mines and thus improve productivity, safety, and health.

머신러닝 기반 고용량 I-131의 용량 예측 모델에 관한 연구 (A Study on Predictive Modeling of I-131 Radioactivity Based on Machine Learning)

  • 유연욱;이충운;김정수
    • 대한방사선기술학회지:방사선기술과학
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    • 제46권2호
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    • pp.131-139
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    • 2023
  • High-dose I-131 used for the treatment of thyroid cancer causes localized exposure among radiology technologists handling it. There is a delay between the calibration date and when the dose of I-131 is administered to a patient. Therefore, it is necessary to directly measure the radioactivity of the administered dose using a dose calibrator. In this study, we attempted to apply machine learning modeling to measured external dose rates from shielded I-131 in order to predict their radioactivity. External dose rates were measured at 1 m, 0.3 m, and 0.1 m distances from a shielded container with the I-131, with a total of 868 sets of measurements taken. For the modeling process, we utilized the hold-out method to partition the data with a 7:3 ratio (609 for the training set:259 for the test set). For the machine learning algorithms, we chose linear regression, decision tree, random forest and XGBoost. To evaluate the models, we calculated root mean square error (RMSE), mean square error (MSE), and mean absolute error (MAE) to evaluate accuracy and R2 to evaluate explanatory power. Evaluation results are as follows. Linear regression (RMSE 268.15, MSE 71901.87, MAE 231.68, R2 0.92), decision tree (RMSE 108.89, MSE 11856.92, MAE 19.24, R2 0.99), random forest (RMSE 8.89, MSE 79.10, MAE 6.55, R2 0.99), XGBoost (RMSE 10.21, MSE 104.22, MAE 7.68, R2 0.99). The random forest model achieved the highest predictive ability. Improving the model's performance in the future is expected to contribute to lowering exposure among radiology technologists.