• 제목/요약/키워드: operator radiation dose

검색결과 31건 처리시간 0.033초

Development and evaluation of modified lead gloves to reduce hand radiation dose during interventional radiological procedures

  • Hyun-Jun Park;Byungdu Jo;Seung-Jae Lee
    • Nuclear Engineering and Technology
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    • 제56권7호
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    • pp.2781-2789
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    • 2024
  • We developed lead gloves that minimize radiation dose to the operator's hands during interventional radiological procedures and that do not impede the operator's surgical capabilities. Existing lead gloves can protect the operator's hands by shielding radiation, but use of such gloves may impair preception sensitivity, resulting in a reduction in the operator's surgical ability. Accordingly, in this study, we developed modified lead gloves that can reduce radiation dose while maintaining operator sensitivity during procedures by modifying the operator's main surgical finger area in existing lead gloves. To evaluate the performance of developed modified lead gloves, radiation was applied in surgical conditions without gloves and with surgical gloves, lead gloves, and modified lead gloves. The radiation dose was evaluated for each condition. When the modified lead gloves were worn, the degree of shielding was similar to when conventional lead gloves were worn. Based on these results, if the operator wears modified lead gloves during interventional radiological procedures, they will protect the hands from radiation while maintaining physical sensitivity in the hands.

The reduction methods of operator's radiation dose for portable dental X-ray machines

  • Cho, Jeong-Yeon;Han, Won-Jeong
    • Restorative Dentistry and Endodontics
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    • 제37권3호
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    • pp.160-164
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    • 2012
  • Objectives: This study was aimed to investigate the methods to reduce operator's radiation dose when taking intraoral radiographs with portable dental X-ray machines. Materials and Methods: Two kinds of portable dental X-ray machines (DX3000, Dexcowin and Rextar, Posdion) were used. Operator's radiation dose was measured with an 1,800 cc ionization chamber (RadCal Corp.) at the hand level of X-ray tubehead and at the operator's chest and waist levels with and without the backscatter shield. The operator's radiation dose at the hand level was measured with and without lead gloves and with long and short cones. Results: The backscatter shield reduced operator's radiation dose at the hand level of X-ray tubehead to 23 - 32%, the lead gloves to 26 - 31%, and long cone to 48 - 52%. And the backscatter shield reduced operator's radiation dose at the operator's chest and waist levels to 0.1 - 37%. Conclusions: When portable dental X-ray systems are used, it is recommended to select X-ray machine attached with a backscatter shield and a long cone and to wear the lead gloves.

C-Arm 장비의 사용 시 시술자의 피폭선량 저 감화 방법 연구 (Study on the Method for Reducing the Operator's Exposure Dose From a C-Arm System)

  • 김기식;송종남;김승옥
    • 대한방사선기술학회지:방사선기술과학
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    • 제39권4호
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    • pp.493-499
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    • 2016
  • C-arm장비의 사용 시 시술자의 산란선에 의한 피폭선량을 확인하여 적절하고 효율적인 피폭선량 저 감화 방법을 알아보기 위해 본 연구를 진행하였다. Over Tube 방식에 비해 피폭선량이 적다는 Under Tube 방식의 C-arm 장비를 활용하여 연구한 결과 차폐도구가 두꺼울수록 시술자의 피폭선량은 감소하였고, 중심선에서 멀어질수록 피폭선량이 감소하였고, 조사시간이 길어질수록 피폭선량이 증가하였고, 세 곳의 선량계 부착위치 중 생식선에서 가장 많은 피폭선량이 측정되었고 흉부, 갑상선 순이었다. 그러나 실제 시술 중 피폭선량을 줄이기 위해 거리를 무한정 늘릴 수 없고, 조사시간을 무한정 단축시킬 수 없기 때문에 인위적으로 조절 가능한 차폐 두께를 달리하는 방법으로 시술자의 피폭선량을 감소시킬 수 있었다. C-arm장비를 사용할 경우 시술 중 불편하다는 이유로 방사선 차폐에 소홀히 하고 근접시술이 이루어지기 때문에 피폭량은 증가할 수밖에 없다. 이에 C-Arm장비의 특성상 조정실을 구비할 수 없으므로 Apron 등의 방사선 차폐도구의 적정두께 사용 등으로 시술 중 발생되는 방사선에 의한 시술자의 피폭선량을 경감시켜야 할 것으로 사료된다.

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.

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

  • 한수철;홍동희
    • 대한방사선기술학회지:방사선기술과학
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    • 제39권3호
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    • pp.323-328
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    • 2016
  • 두경부 질환의 인터벤션 시술 시 시술자가 받는 피폭선량의 평가 및 감소연구를 위한 선행 연구로써, 이온 전리함을 이용하여 인터벤션 시술 시 시술자의 위치하는 공간선량 분포를 측정하였다. Bi-plane 인터벤션 시술 장비를 대상으로 4개 구역(45, 135, 225 그리고 315도)으로 나누어 가상의 시술자가 있다는 가정아래에 시술자의 결정장기위치에서 거리(80, 100, 120, 그리고 140 cm)에 따라 조사선량을 측정하였으며, 방사선발생장치의 위치를 변화시켜 선량변화를 분석하였다. 시술자의 대부분이 위치하는 225도의 구역의 조사선량은 가장 가까운 거리인 80 cm에서 시술자 눈의 높이에서 114.5 mR/h, 가슴의 높이는 143.1 mR/h, 그리고 생식기위치는 147 mR/h이었다. 그리고 방사선 발생장치의 위치를 시술자 가까이로 변화시켰을 경우, 평균적으로 $18.1{\pm}10.5%$의 선량이 증가하였다. 본 연구에서 인터벤션 시술 동안 시술자가 위치할 수 있는 곳의 공간선량분포를 확인하였으며, 본 연구 결과를 통하여 시술자의 방사선 방어에 대하여 구체적인 계획을 수립할 수 있을 것이라 사료된다.

뇌혈관 중재적 시술에서 차폐체를 이용한 시술자의 피폭선량과 화질에 관한 연구 (Study on Exposure Dose and Image Quality of Operator Using Shielding Material in Neuro Interventional Radiology)

  • 김대호;김상현;이영진;임종천;한동균
    • 한국방사선학회논문지
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    • 제11권7호
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    • pp.579-587
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    • 2017
  • 중재적 시술은 매우 낮은 관전류를 사용함에도 불구하고 장시간 방사선 피폭으로 인해 시술자뿐만 아니라 환자의 방사선 노출에 의한 위험도가 크다. 이에 본 연구의 목적은 뇌혈관 중재적 시술 시 시술자가 받는 선량을 측정하고 의료 방사선으로부터의 노출을 효율적으로 차단할 수 있는 차폐물질과 차폐방식을 찾아 시술자가 받는 피폭선량을 화질에 영향을 미치지 않는 범위 내에서 최소화 할 수 있는 방법을 찾는 것이다. 결과적으로, Nano Tungsten 물질로 새롭게 고안한 차폐방식을 사용하였을 때 시술자 측에서 평균 7.95% 선량이 감소되는 것을 확인할 수 있었다. 또한, 본 연구에서 고안한 차폐체를 사용하였을 때 PSNR의 결과는 38.44 dB로 측정되었으며 이는 Nano Tungsten이 영상의 화질에 큰 영향을 끼치지 않는 것으로 확인할 수 있었다. 결론적으로, Nano Tungsten 차폐물질은 화질에 영향을 미치지 않는 범위 내에서 시술자뿐만 아니라 환자의 선량을 상당히 줄일 수 있음을 알 수 있었다. 위의 물질을 사용할 경우 최근 차폐물질의 이슈로 부각되고 있는 인체 및 환경의 유해성 및 경제성에 관련한 문제점들을 해결할 수 있을 것으로 기대된다.

X-선 발생장치 정류방식에 따른 출력특성에 관한 연구

  • 나길주;백수웅;양현훈;박계춘
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 추계학술대회 논문집
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    • pp.126-126
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    • 2009
  • X-ray high-voltage generator is the most important part that can decide the radiation exposure dose affecting a patient or operator according to the characteristic. If decrease of X-ray radiation exposure dose and output characteristic of high-voltage generator is unstable, a patient or operator must be exposed to more radiation. This study measures and analyzes the exposure dose reproducibility and output characteristic according to a change of tube current on the various rectification methods of diagnostic X-ray equipment. It can find that quality bastardize and output is increased if voltage of X-ray tube is increased. Exposure dose reproducibility according to output of X-ray equipment is extremely excellent in inverter type, and is stable in order of following three-phase, a single-phase and condenser method. This study can find that the reply incidence of high-voltage generator is generated due to difference in rectification method, noise occurs in X-ray due to that, quality of an image is decreased due to that, and medical diagnosis can be failed due to that.

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Radiation Exposure Dose of Handlers Using 18F-FDG in Small Animal Image Acquisition Experiments

  • Ik Soo Kim;Sun Young Yoon;Hwa Yeon Yeo
    • 방사선산업학회지
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    • 제17권3호
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    • pp.233-238
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    • 2023
  • This study was conducted to confirm the safety of the operator's radiation exposure in the micro PET-CT image acquisition experiment using the 18F-FDG. The usage of 18F-FDG and the exposure dose of handlers were measured at University B in Metropolitan City A, which uses 18F-FDG for micro PET-CT image acquisition. As a result of the measurement, the exposure dose is far below the effective dose limit of radiation workers, 50 mSv per year, and the equivalent dose limit of 500 mSv per year for hands, feet, and skin. has been measured Since these exposure doses can be further increased according to the number of times of use of 18F-FDG, it is judged that the exposure dose compared to the handling amount of 18F-FDG shown in this study can be used as reference data. In addition, as changed environments such as the use of materials other than unopened RI are occurring in education and research environments, such as the use of 18F-FDG at University B, radiation exposure with more interest in safety management by checking the factors of radiation exposure of the handler concerned We will always do our best to reduce it.

Analysis of Radiation Exposure Dose according to Location Change during Radiation Irradiation

  • Chang-Ho Cho;Jeong-Lae Kim
    • International Journal of Advanced Culture Technology
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    • 제12권2호
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    • pp.368-374
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    • 2024
  • During an X-ray examination, the beam of radiation is dispersed in many directions. We believe that managing radiation dose is about providing transparency to users and patients in the accurate investigation and analysis of radiation dose. The purpose of measuring the radiation dose as a function of location is to ensure that medical personnel using the equipment or participating in the operating room are minimally harmed by the different radiation doses depending on their location. Four mobile diagnostic X-ray units were used to analyze the radiation dose depending on the spatial location. The image intensifier and the flat panel detector type that receives the image analyzed the dose by angle to measure the distribution of the exposure dose by location. The radiation equipment used was composed of four units, and measuring devices were installed according to the location. The X-ray (C-arm) was measured by varying the position from 0 to 360 degrees, and the highest dose was measured at the center position based on the abdominal position, and the highest dose was measured at the 90° position for the head position when using the image intensifier equipment. The operator or medical staff can see that the radiation dose varies depending on the position of the diagnostic radiation generator. In the image intensifier and flat panel detector type that accepts images, the dose by angle was analyzed for the distribution of exposed dose by position, and the measurement method should be changed according to the provision of dose information that is different from the dose output from the equipment according to the position.

A Review of Dose Rate Meters as First Responders to Ionising Radiation

  • Akber, Aqeel Ahmad;Wiggins, Matthew Benfield
    • Journal of Radiation Protection and Research
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    • 제44권3호
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    • pp.97-102
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    • 2019
  • Background: Dose rate meters are the most widely used, and perhaps one of the most important tools for the measurement of ionising radiation. They are often the first, or only, device available to a user for an instant check of radiation dose at a certain location. Throughout the world, radiation safety practices rely strongly on the output of these dose rate meters. But how well do we know the quality of their output? Materials and Methods: This review is based on the measurements 1,158 commercially available dose rate meters of 116 different makes and models. Expected versus the displayed dose patterns and consistency was checked at various dose rates between $5{\mu}Gy{\cdot}h^{-1}$ and $2mGy{\cdot}h^{-1}$. Samples of these meters were then selected for further investigation and were exposed to radiation sources covering photon energies from 50 keV to 1.5 MeV. The effect of detector orientation on its reading was also investigated. Rather than focusing on the angular response distribution that is often reported by the manufacturer of the device, this study focussed on the design ergonomics i.e. the angles that the operator will realistically use to measure a dose rate. Results and Discussion: This review shows the scope and boundaries of the ionising radiation dose rate estimations that are made using commonly available meters. Observations showed both inter and intra make and model variations, occasional cases of instrument failure, instrument walk away, and erroneous response. Conclusion: The results indicate the significance of selecting and maintaining suitable monitors for specific applications in radiation safety.