• Title/Summary/Keyword: Digital Radiography System

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Characterization of Imaging and Physical Properties in Digital Radiography System (디지탈 X-선 촬영시스템의 영상 및 물리적 특성 분석)

  • Kim, Jong-Hyo;Lee, Tae-Soo;Park, Kwang-Suk;Han, Man-Cheong;Lee, Choong-Woong;Min, Byoung-Goo
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.26 no.7
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    • pp.112-124
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    • 1989
  • In order to evaluate imaging performance of newly developed digital radiography system which requires scanning time as short as 0.7 sec and patient exposure as low as 3 mR, we have investigated its imaging and physical properties such as sensitivity characteristic, scatter fraction, detective quantum efficiency, modulation transfer function, and contrast detail diagram. The results show that the digital radiography system has linear sensitivity to the incident energy, and superior contrast resolving power with less X-ray exposure than conventional film-screen system. These performances are resulted from excellent scatter rejection capability and high detective quantum efficiency of digital radiography system.

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National Data Analysis of General Radiography Projection Method in Medical Imaging (영상의학검사 일반촬영 분야의 촬영기법에 대한 분석)

  • Kim, Jung-Su;Kim, Jung-Min;Lee, Young-Han;Seo, Deok-Nam;Choi, In-Seok;Nam, So-Ra;Yoon, Yong-Su;Kim, Hyun-Ji;Min, Hye-Lim;Her, Jea;Han, Seong-Gyu
    • Journal of radiological science and technology
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    • v.37 no.3
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    • pp.169-175
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    • 2014
  • According to database of medical institutions of health insurance review & assessment service in 2013, 1118 hospitals and clinics have department of radiology in Korea. And there are CT, fluoroscopic and general radiographic equipment in those hospitals. Above all, general radiographic equipment is the most commonly used in the radiology department. And most of the general radiographic equipment are changing the digital radiography system from the film-screen types of the radiography system nowadays. However, most of the digital radiography department are used the film-screen types of the radiography system. Therefore, in this study, we confirmed present conditions of technical items for general radiography used in hospital and research on general radiographic techniques in domestic medical institutions. We analyzed 26 radiography projection method including chest, skull, spine and pelvis which are generally used in the radiography department.

Evaluation of Image Receptor Characteristics in Computed Radiography System Using Exposure Index in International Electrotechnical Commission (I) (IEC 규정 노출지수를 활용한 디지털 방사선 영상시스템에서의 영상 수용체간 특성평가 (I))

  • Park, Hyemin;Yoon, Yongsu;Roh, Younghoon;Kim, Sungjun;Na, Chanyoung;Han, Taeho;Kim, Jungsu;Jeong, hoiwoun;Kim, Jungmin
    • Journal of radiological science and technology
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    • v.42 no.4
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    • pp.291-299
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    • 2019
  • The International Electrotechnical Commission (IEC) has regulated the definition and requirements of the exposure index (EI). In this study, we calculated the EI of several image receptors in digital radiography system of two different manufacturers according to the method as per IEC, and evaluated the relationship with incident air kerma. To calculate the EI, w e obtained the characteristics curve of each image receptor by increasing the incident air kerma at RQA 3, 5, 7 and 9, respectively. As a result, there was no significant difference in the EI values between different image receptors of the same manufacturer, but EI values of different manufacturer was different despite the same air kerma was incident. Therefore, understanding the characteristics of the digital radiography systems is important in order to use EI as a tool for measuring and managing the radiation dose.

System of a Selenium Based X-ray Detector for Radiography (일반촬영을 위한 셀레늄 기반의 엑스선 검출기 시스템)

  • Lee, D.G.;Park, J.K.;Choi, J.Y.;Ahn, S.H.;Nam, S.H.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2002.07b
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    • pp.817-820
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    • 2002
  • Amorphous selenium based flat panel detectors convert incident x-ray to electric signal directly. Flat panel detectors gain more interest real time medical x-ray imaging. TFT array and electric readout circuits are used in this paper offered by LG.Philips.LCD. Detector is based on a $1536{\times}1280$ array of a-Si TFT pixels. X-ray conversion layer(a-Se) is deposited upper TFT array with a $400{\mu}m$ by thermal deposition technology. Thickness uniformity of this layer is made of thickness control system technology$({\leq}5%)$. Each $139{\mu}m{\times}139{\mu}m$ pixel is made of thin film transistor technology, a storage capacitor and collecting electrode having geometrical fill factor of 86%. This system show dynamic performance. Imaging performance is suited for digital radiography imaging substitute by conventional radiography film system.

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Contrast-Detail Phantom을 이용한 CR에서 Image Plate의 사용 횟수에 따른 Contrast-Detail Curve의 변화

  • Lee, Seung-Cheol;Park, Jang-Heum;Kim, Jae-Dong;Park, Chang-Hyeon
    • Korean Journal of Digital Imaging in Medicine
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    • v.7 no.1
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    • pp.7-13
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    • 2005
  • Purpose : Image plate (IP) is substituted for film in computed radiography. This study is to investigate into a variation of contrast and detail by the number used of image plate in computed radiography. Materials and Methods : A Contrast-Detail(CD)-RAD 2.0 phantom(Nijmegen hospital, The Netherlands) was used for this study. The computed radiography(CR) CD-RAD phantom images were acquired at 40 kVp, 160 mA, 1.6 mAs, and small focus with the Shimadzu general radiography UD-150B-10 system and Fuji FCR 5000 image process system with speed of 200. The IP used including once, 5000 times, and 10000 times also was used. The numerical value of image quality figures (IQF) was produced by CD-RAD analyser(the program is installed in the directory), and then contrast-detail curve was drawn. Results : In this study, the value of IQF was 3.53 in IP used once, 3.40 in 5000 times, and 3.22 in 10000 times. Conclusions : There was a variation of contrast-detail curve by the number used of IP with contrast-detail phantom in computed radiography. Therefore, it is necessary that the IP with lower IQF and a shift of contrast-detail curve to the lower left part is used.

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Characterization of digital radiography system (디지탈 X-선 촬영시스템의 영상특성 분석)

  • 김종효;신동익;박광석;민병구;이충웅
    • 제어로봇시스템학회:학술대회논문집
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    • 1988.10a
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    • pp.701-705
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    • 1988
  • We have investigated imaging performance of digital rediography system by measured several imaging properties such as sensitivity characteristic, scatter fraction, modulation transfer function and detective quentum efficiency. The results show that digital rediography system has linear sesitivity to incident energy, excellent scatter elliminaility and high detective quentum efficiency, but poor modulatio transfer function.

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Seperate Driving System For Large Area X-ray Detector In Radiology (대면적 X-ray 검출기를 위한 분할 구동 시스템)

  • Lee, D.G.;Park, J.K.;Kim, D.H.;Nam, S.H.;Ahn, S.H.;Park, H.D.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2003.11a
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    • pp.388-391
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    • 2003
  • The properties of these detectors can be controlled by electronics and exposure conditions. Flat-panel detectors for digital diagnostic imaging convert incident x-ray images to charge images. Flat panel detectors gain more interest real time medical x-ray imaging. Active area of flat panel detector is $14{\times}17$ inch. Detector is based on a $2560{\times}3072$ away of photoconductor and TFT pixels. X-ray conversion layer is deposited upper TFT array flat panel with a 500m by thermal deposition technology. Thickness uniformity of this layer is made of thickness control technology(5%) of thermal deposition system. Each $139m{\times}139m$ pixel is made of thin film transistor technology, a storage capacitor and charge collection electrode having geometrical fill factor of 86%. Using the separate driving system of two dimensional mosaic modules for large area, that is able to 4.2 second per frame. Imaging performance is suited for digital radiography imaging substitute by conventional radiography film system..

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RADIOPACITY COMPARISON OF TOOTH COLORED RESTORATIVE MATERIALS WITH DIGITAL RADIOGRAPHY (디지털 방사선사진술을 이용한 치아색 수복물의 방사선불투과도 비교)

  • Kim, Hyo-Jung;Kim, Sung-Kyo
    • Restorative Dentistry and Endodontics
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    • v.25 no.4
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    • pp.499-508
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    • 2000
  • The purposes of this study were to evaluate the validity of 2 kinds of digital radiography techniques in evaluating the radiopacity comparison of restorative materials and to determine the relative radiopacities of several kinds of compomer and flow able resin using these techniques. After taking radiographs of an aluminum step wedge, con-elation of optical density calibration curves were evaluated between conventional radiography with transmission densitometer and CD-Dent digital radiography (storage phosphor system) and between conventional one and RVG$^{(R)}$ digital radiography (CCD system). Compomers such as Dyract$^{(R)}$ AP, Compoglass$^{(R)}$, and Dyract flow$^{(R)}$, and flowable resins such as Ultraseal-XT$^{(R)}$ plus$^{TM}$, Revolution$^{TM}$, Aeliteflo$^{TM}$ and Tetric-flow$^{(R)}$ were used. Five specimens of 5mm in diameter and 2 mm thick were fabricated with each material. Radiopacities of the materials were measured using the above radiographic techniques and compared. The results were as follows: 1. When the optical density calibration curves were compared, conventional radiography and both CD-Dent and RVG$^{(R)}$ digital radiographies showed very high inverse correlations (${\gamma}$=-0.95, ${\gamma}$=-0.98 ; p<0.05). 2. All the tested restorative materials showed levels of radiopacity the same as or greater than that of dentin (p<0.05), Radiopacities of Dyract$^{(R)}$ AP, Compoglass$^{(R)}$, and Tetric flow$^{(R)}$ were greater than those of Revolution$^{TM}$, Aeliteflo$^{TM}$, or dentin (p<0.05). 3. Radiopacities of Dyract$^{(R)}$ AP, Compoglass$^{(R)}$, and Tetric flow$^{(R)}$ were shown to be greater than that of enamel when conventional radiography and CD-Dent digital radiography were used (p<0.05). Radiopacity of Dyract flow$^{(R)}$ was shown to be greater than that of Enamel when conventional radiography was used (p<0.05).

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Analysis of the information capacity of digital radiograpy system (디지탈 X-선 촬영 시스템의 정보용량 분석)

  • 김종효;민병구;박광석;한만청
    • 제어로봇시스템학회:학술대회논문집
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    • 1990.10a
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    • pp.564-569
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    • 1990
  • In this paper, the information capacity, the Integrate performance measure of digital radiography system has been quantitatively analyzed. The effect of various factors affecting the information capacity of the digital radiography system in multi-stage detection processes has been considered and analyzed In detail. The results show that the more Information capacity can be obtained with the smaller detector cell area, despite of the decreasing signal to noise ratio due to the reduced number of X-ray photons per detector cell. And also has been Indicated that the Increase of the information capacity may be severely lost by the addition of electric noise in final read-out stage.

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AN ASSESSMENT OF THE SHORT-TERM EFFECT OF PERIODONTAL FLAP SURGERY BY DIGITAL SUBTRACTION RADIOGRAPHY (계수공제영상 방사선 측정법을 이용한 치주판막술 후 치조골 변화의 평가)

  • Jin, Yoo-Nam;Chung, Hyun-Ju
    • Journal of Periodontal and Implant Science
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    • v.23 no.3
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    • pp.595-604
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    • 1993
  • Since $Gr{\"{o}}nadhl$ et al introduced a digital subtraction radiography into periodontal dignosis in 1983, many reports using this system has aimed to assess the peroiodontal disease activity and the alveolar bone changes after periodontal treatment. The present study was performed to evaluate the usefulness of digital subtraction radiography for asessing an alveolar bone changes in 3 months after periodontal flap surgery. Serial intraral raiographs were taken from 5 normal subjects and 6 periodontally diseased patients using customized bite blocks attached to film holder in fxation device and digitized by image processing system(consisting of IBM 386, digital frame grabber, CCD camera, Image-pro II software). And the reference parameters were measured by pixel unit and compared with respective radiographs. The serial radiographs showed a little and statistically insignificant difference in reference paramenters. The conventional intraoral radiographs, the subtraction images and the clor enhanced subtraction images were reviewed by 4 examiners and the examiner's agreement rates were compared. The subtraction images and its color enhanced images showed higher examiner's agreement rate than the conventional radiographs. And the propotions of sites diagnosed with bone loss or gain after periodontal surgery were highter in the subtraction images and its color enhanced images than in the conventional radiographs. Especially, in color enhanced images, the unber of bone agin sites tended to increase according to post-surgery periods. These results indicate that projection geometry could be standardized with the divice used in this study, and the subtraction radiography may be useful to assess an alveolar bone changes after periodntal flap surgery.

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