• 제목/요약/키워드: X ray tube

검색결과 517건 처리시간 0.024초

Evaluations of the Space Dose and Dose Reductions in Patients and Practitioners by Using the C-arm X-ray Tube Shielding Devices Developed in Our Laboratory

  • Kim, Jae Seok;Kim, Sung Ho;Lee, Bu Hyung;Kwon, Soo Il;Jung, Hai Jo;Hoe, Seong Wook;Son, Jin Hyun;Kang, Byeong Sam
    • 한국의학물리학회지:의학물리
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    • 제27권4호
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    • pp.241-249
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    • 2016
  • The present study used a digital angiography x-ray device to measure the space dose and exposure dose of patients and practitioners using x-ray tube shielding devices developed in our laboratory. The intent of the study was to reduce the space dose within the test room, and to reduce the exposure dose of patients and practitioners. The patient and practitioner exposure doses were measured in five configurations in a human body model. The glass dosimeter was placed on the eye lenses, thyroid glands, left shoulder, right shoulder, and gonads. The beam was collimated at full size and at a 48% reduction for a comparative analysis of the measurements. The space dose was measured with an ion chamber at distances of 50 cm, 100 cm, and 150 cm from the x-ray tube under the following conditions: no shielding device; a shielding device made of 3-mm-thick lead (Pb) [Pb 3 mm shield], and a shielding device made of 3-mm-thick Pb (outside) and 3-mm-thick aluminum (Al) (inside) [Pb 3 mm+Al 3 mm shield]. The absorbed dose was the lowest when the 3-mm-thick Pb+3-mm-thick Al shield was used. For measurements made with collimated beams with a 48% reduction, the dose was the lowest at $154{\mu}Gy$ when the 3-mm-thick Pb+3-mm-thick Al shield was used, and was $9{\mu}Gy$ lower than the measurements made with no shielding device. If the space dose can be reduced by 20% in all situations where the C-arm is employed by using the x-ray tube shielding devices developed in our laboratory, this is expected to play an important role in reducing the annual exposure dose for patients, practitioners, and assistants.

X선조사(線照射)에 의한 절연유(絶緣油)의 도전특성(導電特性)에 관한 연구(硏究) (A Study on Conductivity Characteristics of X-ray Irradiated Insulating Oil)

  • 김영일;이덕출;정연택
    • 대한방사선기술학회지:방사선기술과학
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    • 제10권1호
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    • pp.75-83
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    • 1987
  • The insulating oil used for X-ray tube housing were degraded by X-ray irrdiation, high temperature and high anode voltage for normal operation. This study was measured the conduction current-X-ray dose, heating degradation, time, temperature and electric field characteristics and the dependense of electrode materials and gap length in the X-ray irradiatied insulating oil under of D.C voltage. The obtained results can be summarized as following. 1. The conduction current of X-ray irradiated insulating oil is more about $2.5{\sim}3$ times as large as than that of non x-ray irradiated, and is become saturation phenomena after some degree. 2. The conduction current of many times heating x-ray irradiated insulating oil is more than that of a few times heating. 3. The higher temperature x-ray irradiated insulating oil is increased, the more conduction current, and that is increased about ten times as large as when it's temperatures is increased to $80^{\circ}C\;at\;30^{\circ}C$, twenty five times at $100^{\circ}C$. 4. The dependence of electrode materials is appeared at the low electric field, and the small gap length with Fe > Cu > Al. 5. The low electric field than 3000 v/cm is appeared Ohm's law region, and the high is become saturation region at the I-E characteristics. 6. The larger gap length is become, the more conduction current is increased at the same electric field.

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간접촬영용 X-선 발생장치 성능 평가 (An ability test for the use of indirect radiographic unit)

  • 임인철
    • 대한방사선기술학회지:방사선기술과학
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    • 제27권4호
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    • pp.37-41
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    • 2004
  • 목 적 : 측정을 통한 장치의 성능관리 평가로 임상실무에서의 능력배양과 정확한 관전압, 조사시간, 출력선량을 측정하는 기술을 익히고 병원에서 사용 중인 간접촬영용 X-선 발생장치 성능현황을 파악하기 위함이다. 재료 및 방법 : 관전압, 조사시간, 출력선량 측정기를 이용하여 10개 대학병원 간접촬영용 X-선 발생장치(원내,외 각 10대)를 이용하였다. 결 과 : 관전압 정확도 시험 PAE 판정에 의해 부적합한 간접촬영기는 3대가 나왔으며, 조사시간의 정확도 시험에서는 2대, 또한 조사선량의 재현성 시험에서도 조사선량에 대한 변동계수를 계산한 결과 3대가 나왔다. 3가지 성능검사에서 원외(이동차량)의 부적합한 간접촬영기는 5대, 원내는 3대로 원외(이동차량)의 간접촬영기가 원내보다 부적합한 것이 높게 나타났다. 결 론 : 간접촬영기의 성능을 일정하게 유지함으로서 방사선 피폭경감, 화질관리, 재촬영 감소 등에 의해 환자에게 양질의 의료서비스를 제공할 수 있는 여건을 마련할 수 있을 것이다. 따라서 정기적인 성능검사가 필요하다고 사료된다.

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단일 비산란 그리드 및 다색광 x-선원 기반 위상대조 x-선 영상화 실험 연구 (Experimental Study for Phase-contrast X-ray Imaging Based on a Single Antiscatter Grid and a Polychromatic X-ray Source)

  • 박연옥;조효성;임현우;제의규;박철규;조희문;김규석;김건아;박소영
    • 한국의학물리학회지:의학물리
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    • 제26권4호
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    • pp.215-222
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    • 2015
  • 본 연구에서는 단일 비산란 그리드 및 다색광 x-선원을 이용하여 위상대조 x-선 영상을 용이하게 구현할 수 있는 새로운 방법을 제안한다. 제안된 신기법의 개념 입증을 위해 집속형 선형 그리드(200 lines/inch 선 밀도), 마이크로 초점 x-선관(${\sim}5{\mu}m$ 초점크기), CMOS형 평판형 검출기($48{\mu}m$ 픽셀 크기)로 실험장치를 구성하였으며, 한 번의 x-선 촬영($90kV_p$, 0.1 mAs)으로 감약대조 x-선 영상과 향상된 가시성을 지진 산란 x-선 영상 및 차분 위상대조 x-선 영상을 Fourier변조복원 기법을 적용하여 성공적으로 분리 획득하였다. 더 나아가, 감약대조 x-선 영상과 산란 x-선 영상을 합성함으로써 일반 감약대조 x-선 영상에서는 명확하게 볼 수 없는 샘플의 미세 구조를 보다 선명하게 나타냄을 확인하였다. 본 논문에서 제안한 단일 비산란 그리드 기반 위상대조 x-선 영상화 기법은 실험 구성 및 절차가 단순하고 새로운 대조도에 기반한 산란 및 위상대조 x-선 영상을 동시에 제공하기 때문에 차세대 x-선 영상화 신기법으로 다양한 응용분야에서 용이하게 적용될 수 있을 것으로 전망한다.

진단방사선 영역에서 피폭선량 감소를 위한 기술적 연구 - 관전압과 부가여과판을 중심으로 - (A Study for Reduction of Radiation Dose in the Field of Diagnostic Radiology - A Point of Tube Voltage and Filtration -)

  • 하호영
    • 대한방사선기술학회지:방사선기술과학
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    • 제15권1호
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    • pp.89-97
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    • 1992
  • X-ray quality is identified numerically by half value layer(H.V.L) and the HVL is affected by the kVp and the amount of filtration in the useful beam. X-ray quality evaluated by H.L.D is influenced by kVp and filtration. Author had several experiments with phantom in diameter of 8 cm normal adult chest, for reduction of radiation dose of the patients in diagnostic radiology and got some results. 1. H.V.L is increased the thicker the filter and the higher the kVp. 2. If the kVp is increased from 60 to 120, the skin dose can be reduced as 34%(Skin dose of 60 kVp with 4 mmAl filter : 100%). 3. If the 4 mmAl filter with 60 kVp is added to x-ray tube, skin dose can be reduced as 23% than no filter. 4. Therefore high kVp and filtration can increase output to input dose ratio and 120 kVp and 4 mmAl filter were most effective for reduction of patient dose in chest radiography.

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Fluoroscopic Radiation Exposure during Percutaneous Kyphoplasty

  • Choi, Hyun-Chul
    • Journal of Korean Neurosurgical Society
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    • 제49권1호
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    • pp.37-42
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    • 2011
  • Objective: The author measured levels of fluoroscopic radiation exposure to the surgeon's body based on the different beam directions during kyphoplasty. Methods: This is an observational study. A series of 84 patients (96 vertebral bodies) were treated with kyphoplasty over one year. The patients were divided into four groups based on the horizontal and vertical directions of the X-Ray beams. We measured radiation exposure with the seven dosimetry badges which were worn by the surgeon in each group (total of 28 badges). Twenty-four procedures were measured in each group. Cumulative dose and dose rates were compared between groups. Results: Fluoroscopic radiation is received by the operator in real-time for approximately 50% (half) of the operation time. Thyroid protectors and lead aprons can block radiation almost completely. The largest dose was received in the chest irrespective of beam directions. The lowest level of radiation were received when X-ray tube was away from the surgeon and beneath the bed (dose rate of head, neck, chest, abdomen and knee: 0.2986, 0.2828, 0.9711, 0.8977, 0.8168 mSv, respectively). The radiation differences between each group were approximately 2.7-10 folds. Conclusion: When fluoroscopic guided-KP is performed, the X-Ray tube should be positioned on the opposite side of the operator and below the table, otherwise the received radiation to the surgeon's body would be 2.7-10 times higher than such condition.

금속제트 거동 분석에서의 FTOD 오차 보정에 관한 연구 (A Study on the Correction of Error Induced by FTOD for Investigation of a Metal Jet Behavior)

  • 주재현;이헌주;김시우
    • 한국군사과학기술학회지
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    • 제17권5호
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    • pp.577-584
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    • 2014
  • In this study, the behavior of a shaped charge projectile's metal jet was analyzed using flash radiography. The projectile was installed horizontally to observe the behavior of jet for enough time. While the X-ray tube heads are fixed at one point, the behavior range of the jet is wide in this experimental set up, therefore the angle between the X-ray tube heads and the jet tip is changed continuously as jet moves forward. Jet particle's locations calculated from the X-ray films become different from their real positions under this situation because of the film to object distance(FTOD) and correction for error by FTOD is required. In this study, a method was devised to correct the error by FTOD and this was applied for the investigation of jet behavior of a 70 mm caliber's shaped charge.

피사체(被射體)두께에 따른 선량분포(線量分布) (Dosimetry according to the Object Thickness)

  • 이상석;박성옥
    • 대한방사선기술학회지:방사선기술과학
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    • 제2권1호
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    • pp.85-88
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    • 1979
  • When X-radiation passes through the human body; some is transmitted some is truly absorbed, and some is scattered. In diagnostic radiography, scattered radiation can reach the film if no protective measures are taken. This scattered ray increased density which not necessary for image formation. We studied about absorbtion, scattered ray and the way of get rid of scatter ray according to the x-ray tube kilovoltage and obtained results as follow; 1. Absorbtion ray increased proportion to KVP. 2. Scattered ray increased at high KVP and thick object. 3. Secondary radiation of the primary increased at high KVP and thick object. 4. Remove .ate of scattered ray decreased at thick object and increase at low KVP make use of 6:1 grid ratio

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A pilot study of half-value layer measurements using a semiconductor dosimeter for intraoral radiography

  • Shun Nouchi;Hidenori Yoshida;Yusaku Miki;Yasuhito Tezuka;Ruri Ogawa;Ichiro Ogura
    • Imaging Science in Dentistry
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    • 제53권3호
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    • pp.217-220
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    • 2023
  • Purpose: This pilot study was conducted to evaluate half-value layer (HVL) measurements obtained using a semiconductor dosimeter for intraoral radiography. Materials and Methods: This study included 8 aluminum plates, 4 of which were low-purity (less than 99.9%) and 4 high-purity (greater than 99.9%). Intraoral radiography was performed using an intraoral X-ray unit in accordance with the dental protocol at the authors' affiliated hospital: tube voltage, 60 kVp and 70 kVp; tube current, 7 mA; and exposure time, 0.10 s. The accuracy of HVL measurements for intraoral radiography was assessed using a semiconductor dosimeter. A simple regression analysis was performed to compare the aluminum plate thickness and HVL in relation to the tube voltage (60 kVp and 70 kVp) and aluminum purity (low and high). Results: For the low-purity aluminum plates, the HVL at 60 kVp (Y) and 70 kVp (Y) was significantly correlated with the thickness of the aluminum plate (X), with Y=1.708+0.415X (r=0.999, P<0.05) and Y=1.980+0.484X (r=0.999, P<0.05), respectively. Similarly, for the high-purity aluminum plates, the HVL at 60 kVp (Y) and 70 kVp (Y) was significantly correlated with the plate thickness(X), with Y=1.696+0.454X (r=0.999, P<0.05) and Y=1.968+0.515X (r=0.998, P<0.05), respectively. Conclusion: This pilot study examined the relationship between aluminum plate thickness and HVL measurements using a semiconductor dosimeter for intraoral radiography. Semiconductor dosimeters may prove useful in HVL measurement for purposes such as quality assurance in dental X-ray imaging.

Synchrotron X-선을 이용한 Micrometer 공간 분해능 영상시스템 (Micrometer Spatial Resolution Imaging System Using Synchrotron X-ray)

  • 홍진오;정해조;정하규;제정호;김은경;유형식;김희중
    • 대한의용생체공학회:의공학회지
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    • 제22권2호
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    • pp.165-169
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    • 2001
  • 최근 포항 방사광 가속기 연구소에 미세구조 X-선 영상 실험을 위한 5C1 방사광(Synchrtoron Radiation) 빔라인이 건설되었다. 광대역의 에너지 스펙트럼을 가진 방사광 X-선이 물체를 투과한 후 CdWO$_{4}$ scintillator에 의해 가시광선으로 바뀌고, 그 빛을 CCD 카메라로 받아들여 영상을 획득하게 된다. 방사광 X-선은 일반 의료진단용 X-선에 비하여 위상이 일치하고, 평행하며, 그 양이 풍부한 특성들을 갖고 있다. 방사광 영상시스템과 X-선 유방촬영 시스템에서 영상을 획득하여 영상특성들을 비교, 분석하였다. 고-분해능 X-선 시험 패턴(20 line pairs mm$^{-1}$), 유방촬영 팬텀, 파라핀에 고정한 인체 유방암조직과 포르말린에 고정한 인체 유방암조직, 그리고 capillary tube내 micro-bubbles등의 방사광 영상은 기존의 X-선 유방촬영시스템에서 얻은 영상보다 분해능이 뛰어나고 영상질도 우수하였다. 방사광 X-선 영상시스템은 micrometer 공간 분해능 영상을 획득할 수 있어 많은 기초분야의 영상연구와 의료영상분야에서도 활발하게 활용될 것으로 기대된다.

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