• Title/Summary/Keyword: X-ray 발생장치

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Effect of Human Implantable Medical Devices on Dose and Image Quality during Chest Radiography using Automatic Exposure Control (자동노출제어를 적용한 흉부 방사선 검사 시 인체 이식형 의료기기가 선량과 화질에 미치는 영향)

  • Kang-Min Lee
    • Journal of the Korean Society of Radiology
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    • v.18 no.3
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    • pp.257-265
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    • 2024
  • In this study, we applied AEC(Auto Exposure Control), which is used in many chest examinations, to evaluate whether medical devices inserted into the body affect the dose and image quality of chest images. After attaching three HIMD(Human implantable medical devices) to the ion chamber, the Monte Carlo methodology-based program PCXMC(PC Program for X-ray Monte Carlo) 2.0 was applied to measure the effective dose by inputting the DAP(Dose Ares Product) value derived from the Pacemaker and CRT and Chemoport Additionally, to evaluate image quality, we set three regions of interest and one noise region on the chest and measured SNR and CNR. The final study results showed significant differences in DAP and Effective dose. There was a significant difference between Pacemaker and CRT when AEC was applied and not applied. (p<0.05) When applied, the dose increased by 37% for Pacemaekr and 52% for CRT. Chemoport showed a 10% increase in effective dose depending on whether AEC was applied, but there was no significant difference. (p>0.05) In the image quality evaluation, there was no significant difference in image quality between all HIMD insertions and AEC applied or not. (p>0.05) Therefore, when the HIMD was inserted into the chest during a chest x ray and overlapped with the ion chamber sensor, the effective dose increased, and there was no difference in image quality even at a low dose without AEC. Therefore, when performing a chest X-ray examination of a patient with a HIMD inserted, it is considered that performing the examination without applying AEC is a method that can be considered to reduce the patient's radiation exposure.

Usefulness of Application of Tube Voltage Changes to Reduce Patient Dose during Abdominal CT Follow up (반복적인 복부 컴퓨터단층촬영 시행 시 환자선량 감소를 위한 관전압 변화 적용의 유용성)

  • Yoon, Joon;Kim, HyeonJu
    • Journal of the Korean Society of Radiology
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    • v.15 no.3
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    • pp.293-299
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    • 2021
  • In order to reduce the irresistible radiation exposure of patients who perform periodic examinations using a CT among various scan parameters a method to reduce patient dose was investigated through changes in the tube voltage close to X-ray penetrating power. As a result of the experiment 100 kVp was applied instead of 120 kVp which is commonly used in clinical practice and CTDI decreased by about 41% during scan. In addition the degree of change in image quality was measured as 1046.1±3.7 HU for CT value and 71.4±7.9 for Pixel value and statistical analysis showed no significant difference (0.05

Truncation Artifact Reduction Using Weighted Normalization Method in Prototype R/F Chest Digital Tomosynthesis (CDT) System (프로토타입 R/F 흉부 디지털 단층영상합성장치 시스템에서 잘림 아티팩트 감소를 위한 가중 정규화 접근법에 대한 연구)

  • Son, Junyoung;Choi, Sunghoon;Lee, Donghoon;Kim, Hee-Joung
    • Journal of the Korean Society of Radiology
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    • v.13 no.1
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    • pp.111-118
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    • 2019
  • Chest digital tomosynthesis has become a practical imaging modality because it can solve the problem of anatomy overlapping in conventional chest radiography. However, because of both limited scan angle and finite-size detector, a portion of chest cannot be represented in some or all of the projection. These bring a discontinuity in intensity across the field of view boundaries in the reconstructed slices, which we refer to as the truncation artifacts. The purpose of this study was to reduce truncation artifacts using a weighted normalization approach and to investigate the performance of this approach for our prototype chest digital tomosynthesis system. The system source-to-image distance was 1100 mm, and the center of rotation of X-ray source was located on 100 mm above the detector surface. After obtaining 41 projection views with ${\pm}20^{\circ}$ degrees, tomosynthesis slices were reconstructed with the filtered back projection algorithm. For quantitative evaluation, peak signal to noise ratio and structure similarity index values were evaluated after reconstructing reference image using simulation, and mean value of specific direction values was evaluated using real data. Simulation results showed that the peak signal to noise ratio and structure similarity index was improved respectively. In the case of the experimental results showed that the effect of artifact in the mean value of specific direction of the reconstructed image was reduced. In conclusion, the weighted normalization method improves the quality of image by reducing truncation artifacts. These results suggested that weighted normalization method could improve the image quality of chest digital tomosynthesis.

Study on Radiation Dose in the Medical Image Data Display Method - Focused on the DICOM Standard (의료영상 데이터에서의 피폭선량 표시 방법에 관한 고찰: DICOM 표준을 중심으로)

  • Kim, Jung-Su
    • Journal of radiological science and technology
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    • v.38 no.4
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    • pp.483-489
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    • 2015
  • DICOM (Digital Imaging and Communications in Medicine) standards are generally introduced as de facto and de jure standards in modern medical imaging devices to store and to transmit medical image information. DICOM Dose Structured Report (DICOM dose SR) is implemented to report radiation exposure information in image acquiring process. and DIOCM Modality Performed Procedure Step (DICOM MPPS) is also partly used to report this exposure with the information in its DICOM tag. This article is focused on three type of radiation exposure information of DICOM standards, 1) DICOM dose SR, 2) DICOM MPPS and 3) Radiation Exposure Monitoring(REM) profile by Integrating the Healthcare Enterprise(IHE), to study on radiation exposure reporting. Healthcare facility and its staff of medical imaging related to radiation exposure should have a deep understanding of radiation exposure, and it required a standards to enhance the quality control of medical imaging and the safety of patients and staffs. Staff member have to pay attention on radiation exposures and controling processes from the purchasing stage of X-ray devices.

Measurement of Spatial Dose Distribution for evaluation operator dose during Neuro-interventional Procedures (두경부 질환의 인터벤션 시술 시 시술자의 피폭선량평가를 위한 공간선량측정에 관한 연구)

  • Han, Su-Chul;Hong, Dong-Hee
    • Journal of radiological science and technology
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    • v.39 no.3
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    • pp.323-328
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    • 2016
  • The spatial dose distribution was measured with ionization chamber as preliminary study to evaluate operator dose and to study dose reduction during neuro-interventional procedures. The zone of operators was divided into four area (45, 135, 225, and 315 degree).We supposed that operator exist on the four area and indicated location of critical organs(eyes, breast, gonad). The spatial doses were measured depending on distance( 80, 100, 120, and 140 cm) and location of critical organs. The spatial doses of area of 225 degree were 114.5 mR/h (eyes location), 143.1 mR/h (breast location) and 147 mR/h (gonad location) in 80 cm. When changed location of x-ray generator, spatial dose increased in $18.1{\pm}10.5%$, averagely. We certified spatial dose in the operator locations, Using the results of this study, It is feasible to protect operator from radiation in neuro-interventional procedures.

Study on the growth of 4H-SiC single crystal with high purity SiC fine powder (고순도 SiC 미분말을 적용한 4H-SiC 단결정 성장에 관한 연구)

  • Shin, Dong-Geun;Kim, Byung-Sook;Son, Hae-Rok;Kim, Moo-Seong
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.29 no.6
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    • pp.383-388
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    • 2019
  • High purity SiC fine powder with metal impurity contents of less than 1 ppm was synthesized by improved carbothermal reduction process, and the synthesized powder was used for SiC single crystal growth in RF heating PVT device at temperature above 2,100℃. In-situ x-ray image analyzer was used to observe the sublimation of the powder and single crystal growth behavior during the growth process. SiC powder was used as a source of single crystal growth, exhausted from the outside of the graphite crucible at the growth temperature and left graphite residues. During the growth, the flow of raw materials was concentrated in the middle and influenced the growth behavior of SiC single crystals. This is due to the difference in temperature distribution inside the crucible due to the fine powder. After the single crystal growth was completed, the single crystal ingot was cut into a 1 mm thick single crystal substrate and finely polished using a diamond abrasive slurry. A dark yellow 4H-SiC was observed overall of single crystal substrate, and the polycrystals generated in the outer part may be caused by the incorporation of impurities such as the bubble layer mixed in the process of attaching the seed crystal to the seed holder.

Analysis of dose reduction of surrounding patients in Portable X-ray (Portable X-ray 검사 시 주변 환자 피폭선량 감소 방안 연구)

  • Choe, Deayeon;Ko, Seongjin;Kang, Sesik;Kim, Changsoo;Kim, Junghoon;Kim, Donghyun;Choe, Seokyoon
    • Journal of the Korean Society of Radiology
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    • v.7 no.2
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    • pp.113-120
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    • 2013
  • Nowadays, the medical system towards patients changes into the medical services. As the human rights are improved and the capitalism is enlarged, the rights and needs of patients are gradually increasing. Also, based on this change, several systems in hospitals are revised according to the convenience and needs of patients. Thus, the cases of mobile portable among examinations are getting augmented. Because the number of mobile portable examinations in patient's room, intensive care unit, operating room and recovery room increases, neighboring patients are unnecessarily exposed to radiation so that the examination is legally regulated. Hospitals have to specify that "In case that the examination is taken out of the operating room, emergency room or intensive care units, the portable medical X-ray protective blocks should be set" in accordance with the standards of radiation protective facility in diagnostic radiological system. Some keep this regulation well, but mostly they do not keep. In this study, we shielded around the Collimator where the radiation is detected and then checked the change of dose regarding that of angles in portable tube and collimator before and after shielding. Moreover, we tried to figure out the effects of shielding on dose according to the distance change between patients' beds. As a result, the neighboring areas around the collimator are affected by the shielding. After shielding, the radiation is blocked 20% more than doing nothing. When doing the portable examination, the exposure doses are increased $0^{\circ}C$, $90^{\circ}C$ and $45^{\circ}C$ in order. At the time when the angle is set, the change of doses around the collimator decline after shielding. In addition, the exposure doses related to the distance of beds are less at 1m than 0.5m. In consideration of the shielding effects, putting the beds as far as possible is the best way to block the radiation, which is close to 100%. Next thing is shielding the collimator and its effect is about 20%, and it is more or less 10% by controlling the angles. When taking the portable examination, it is better to keep the patients and guardians far enough away to reduce the exposure doses. However, in case that the bed is fixed and the patient cannot move, it is suggested to shield around the collimator. Furthermore, $90^{\circ}C$ of collimator and tube is recommended. If it is not possible, the examination should be taken at $0^{\circ}C$ and $45^{\circ}C$ is better to be disallowed. The radiation-related workers should be aware of above results, and apply them to themselves in practice. Also, it is recommended to carry out researches and try hard to figure out the ways of reducing the exposure doses and shielding the radiation effectively.

Comparison of Dose and Quality of Copper and Nickel Additional Filter Plate in Diagnostic X-ray Generator (진단용 엑스선 발생장치에서 부가 여과판에 따른 선량과 화질 비교)

  • Lee, Hyun-Kyung;Go, Yu-Rim;Park, Young-Kyeong;Han, Dong-Kyoon
    • Journal of the Korean Society of Radiology
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    • v.11 no.6
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    • pp.459-466
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    • 2017
  • The purpose of this study was to evaluate the difference of dose and image quality according to the material of the additional filter plate by selecting copper and nickel. First, the absorbed dose was measured using a Rando phantom setting the additional filter plates of copper and nickel None, 0.1 mm, 0.2 mm, and 0.3 mm under 120 kVp, and 6.3 mAs. Second, We acquired image according to filter thickness of copper and nickel. by changing the tube voltage of 90 kVp, 100 kVp, 110 kVp, 120 kVp and exposure indexes of 400, 800 and 1600. Third, we obtained the SNR and CNR values using the Image J program and evaluated quantitatively and then evaluated image quality. As a result, Absorbed dose measurements showed that nickel was higher than copper, and the absorbed dose decreased as the thickness increased(p<0.05). Furthermore, Quantitative analysis of images showed no significant difference between the two images according to change the voltage and the exposure index(p>0.05). In conclusion, this study confirms that the nickel addition plate can maintain the current image quality while reducing the exposure dose compared to copper.

ESCA를 이용한 노화된 종이의 표면 변화 특성 관찰

  • 양봉숙;김형진;조병묵;오정수
    • Proceedings of the Korea Technical Association of the Pulp and Paper Industry Conference
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    • 2000.11a
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    • pp.139-139
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    • 2000
  • 종이는 제조 후 시간의 경과에 따라 노화가 야기되기 시작하며 이에 수반되는 현상으로서 종이의 기계적 강도 손실 및 종이의 색 변화를 들 수 있다. 종이의 노화 현상은 주로 빛, 열, 대기 오염물질, 미생물, 곤충 및 화학약품 등의 외부 인자들에 의해 종이 내에서의 가수 분해 또는 산화작용을 발생시키며 이는 종이의 폭넓은 이용올 제한하는 중요한 원인이 되고 있다. 종이의 노화기작은 주로 산 가수분해 및 산화작용 그리고 가교결합 둥으로 해석되고 있다. 이는 종이의 주 구성요소인 셀룰로오스의 수산기가 반웅하여 카르보닐기를 형성하면 서 저분자화 되거나 산소에 의해 산화되면서 저분자화 되어 종이의 강도적 손실이 일어난다 고 보고되고 있으며 종이의 황색화(Yellowing) 현상은 주원인이 종이에 잔존하고 있는 리그 년이 빛과 열에 의해 반응하여 산화됨으로써 야기된다고 설명되고 있다. 즉, 열이나 자외선 및 가시광션의 조사로 인한 셀룰로오스 및 기타 종이 구성물의 산화에 의해 종이가 퇴색되 거나 강도가 저하되는 현상이 일어나게 된다. 특히 이러한 노화 거동은 상온의 경우에서는 펄프와 종이의 황색화가 천천히 일어나지만 옹도가 점차 올라갈수록 그 속도는 빨라진다. 종이가 노화되면서 일어나는 산화반용은 주로 대기 중의 산소와 접촉하기 쉬운 표변에서부 터 발생하기 쉽다. 열처리를 통해 표면에서의 산화 작용은 촉진되고 종이의 구성원소의 결 합에 화학적 변화가 야기된다. 이를 분석하기 위해서 모든 원소가 독특한 결합에너지를 가 지고 있다는 것에 착안 시료 표면에 특정 x-선 및 전자빔을 입사하여 방출하는 광전자의 에너지를 측정함으로써 시료 표면의 조성 및 화학적인 결합상태를 알 수 있는 ESCA ( (Electron Spectroscopy for Chemical Analysis)를 이용하였다 .. ESCA는 주로 표면 원소의 규 명 및 정량분석과 화학결합 상태의 정성, 정량 분석, 깊이에 따른 원소의 농도 분포 분석, 고분자화합물의 특성 조사, 표면 원소의 화학결합에 따른 전자상태 연구 둥에 활용되 고 있 다. 즉, 종이가 노화되면서 원소들 사이에 변화되는 결합을 이러한 에너지 분석에 의해 원소 정성분석 또는 정량분석을 하고자 하였으며, 이를 분석하여 열처리 시 종이 표면에서 일어 나는 변화를 구명하고자 하였다. 이에 따라 본 연구에서는 종이의 노화를 가속화시키는 빛, 대기오염물질, 및 기타 다른 인 자들은 배제하고 열 만을 가해 노화의 진행속도를 높인 후, 노화 진행 시 종이 표변에 일어 나는 산화작용 및 가수분해를 표면 분석 장치인 ESCA를 이용하여 종이의 주 구성원소인 탄소와 산소가 열처리 시 변하는 에너지를 측정하였다. 또한 카르복실기 정량과 종이의 pH 측정 및 X -ray Diffractometer를 이용하여 결정화도를 측정하였다. 본 연구의 결과, 시간의 경과에 따라서 탄소의 결합에너지는 분포가 C-H에서 COO-, 또는 C=O로 달라짐으로써 종 이가 산화되고 있다는 것을 알 수 있었다. 또한 이 결합에너지 분포의 변화가 펄프의 종류 에 따라서 다르게 이동함으로써 제조된 시트의 표면 산화반응이 서로 다르게 일어나고 있음 을 알 수 있었으며, 이는 사용한 펄프의 화학 조성분의 차이에 기인한 것이라 사료된다.

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Evaluation of Effective and Organ Dose Using PCXMC Program in DUKE Phantom and Added Filter for Computed Radiography System (CR 환경에서의 흉부촬영 시 Duke Phantom과 부가여과를 이용한 유효선량 및 장기선량 평가)

  • Kang, Byung-Sam;Park, Min-Joo;Kim, Seung-Chul
    • Journal of radiological science and technology
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    • v.37 no.1
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    • pp.7-14
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    • 2014
  • By using a Chest Phantom(DUKE Phantom) focusing on dose reduction of diagnostic radiation field with the most use of artificial radiation, and attempt to reduce radiation dose studies technical radiation. Publisher of the main user of the X-ray Radiological technologists, Examine the effect of reducing the radiation dose to apply additional filtering of the X-ray generator. In order to understand the organ dose and effective dose by using the PC-Based Monte Carlo Program(PCXMC) Program, the patient receives, was carried out this research. In this experiment, by applying a complex filter using a copper and Al(aluminum,13) and filtered single of using only aluminum with the condition set, and measures the number of the disk of copper indicated by DUKE Phantom. The combination of the composite filtration and filtration of a single number of the disk of the copper is the same, with the PCXMC 2.0. Program looking combination of additional filtration fewest absorbed dose was calculated effective dose and organ dose. Although depends on the use mAs, The 80 kVp AP projection conditions, it is possible to reduce the effective amount of about 84 % from about 30 % to a maximum at least. The 120 kVp PA projection conditions, it is possible to reduce the effective amount of about 71 % from about 41 % to a maximum of at least. The organ dose, dose reduction rate was different in each organ, but it showed a decrease of dose rate of 30 % to up 100 % at least. Additional filtration was used on the imaging conditions throughout the study. There was no change in terms of video quality at low doses. It was found that using the DUKE Phantom and PCXMC 2.0 Program were suitable to calculate the effect of reducing the effective dose and organ dose.