• 제목/요약/키워드: Copper grid

검색결과 44건 처리시간 0.02초

고에너지 전자선의 방사선 치료 기술 (Radiotherapy Technique of High Energy Electron)

  • 서명원;박재일;최홍식;김우열
    • 대한방사선치료학회지
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    • 제1권1호
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    • pp.63-69
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    • 1985
  • High energy electron beams took effect for tumor radio-therapy, however, had a lot of problems in clinical application because of various conversion factors and complication of physical reactions. Therefore, we had experimentally studied the important properties of high energy electron beams from the linear accelerator, LMR-13, installed in Yonsei Cancer Center. The results of experimental studies on the problems in the 8, 10, 12 Mev electron beam therapy were reported as following. 1. On the measurements of the outputs and absorbed does, the ionization type dosimeters that had calibrated by $^{90}Sr$ standard source were suitable as under $3\%$ errors for high energy electrons to measure, but measuring doses in small field sizes and the regions of rapid fall off dose with ionization chambers were difficult. 2. The electron energy were measured precisely with energy spectrometer consisted of magnet analyzer and tele-control detector and the practical electron energy was calculated under $5\%$ errors by maximum range of high energy electron beam in the water. 3. The correcting factors of perturbated dose distributions owing to radiation field, energy and material of the treatment cone were checked and described systematically and variation of dose distributions due to inhomogeneous tissues and sloping skin surfaces were completely compensated. 4. The electron beams, using the scatters; i.e., gold, tin, copper, lead, aluminium foils, were adequately diffused and minimizing the bremsstrahlung X-ray induced by the electron energy, irradiation field size and material of scatterers, respectively. 5. Inproving of the dose distribution from the methods of pendulum, slit, grid and focusing irradiations, the therapeutic capacity with limited electron energy could be extended.

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고(高)에너지 전자선(電子線) 치료(治療)를 위(爲)한 선량분포(線量分布) 및 기술적(技術的) 문제(問題)의 연구(硏究) (Studies on Dose Distribution and Treatment Technique of High Energy Electron)

  • 이도행;추성실
    • Journal of Radiation Protection and Research
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    • 제3권1호
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    • pp.6-22
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    • 1978
  • High energy electron beams took effect for tumor radio-therapy, however, had a lot of problems in clinical application because of various conversion factors and complication of physical reactions. Therefor, we had experimentally studied the important properties of high energy electron beams from the linear accelerator, LMR-13, installed in Yonsei Cancer Center. The results of experimental studies on the problems in the 8, 10, 12 Mev electron beam therapy were reported as following. 1. On the measurements of the outputs and absorbed doses, the ionization type dosimeters that had calibrated by $^{90}Sr$ standard source were suitable as under 3% errors for high energy electrons to measure, but measuring doses in small field sizes and the regions of rapid fall off dose with ionization chambers were difficult. 2. The electron energy were measured precisely with energy spectrometer consisted of magnet analyzer and tele-control detector and the practical electron energy was calculated under 5% errors by maximum range of high energy electron beam in the water. 3. The correcting factors of perturbated dose distributions owing to radiation field, energy and material of the treatment cone were checked and described systematically and variation of dose distributions due to inhomogeneous tissues and sloping skin surfaces were completely compensated. 4. The electron beams, using the scatterers; ie., gold, tin, copper, lead, aluminium foils, were adequately diffused and minimizing the bremsstrahlung X-ray induced by the electron energy, irradiation field size and material of scatterers, respectively. 5. Inproving of the dose distribution from the methods of pendulum, slit, grid and focusing irradiations, the therapeutic capacity with limited electron energy could be extended.

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Selective Emitter 구조를 적용한 Ni/Cu Plating 전극 결정질 실리콘 태양전지 (Application of a Selective Emitter Structure for Ni/Cu Plating Metallization Crystalline Silicon Solar Cells)

  • 김민정;이재두;이수홍
    • 한국전기전자재료학회논문지
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    • 제23권7호
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    • pp.575-579
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    • 2010
  • The technologies of Ni/Cu plating contact is attributed to the reduced series resistance caused by a better contact conductivity of Ni with Si and the subsequent electroplating of Cu on Ni. The ability to pattern narrower grid lines for reduced light shading was combined with the lower resistance of a metal silicide contact and an improved conductivity of the plated deposit. This improves the FF (fill factor) as the series resistance is reduced. This is very much requried in the case of low concentrator solar cells in which the series resistance is one of the important and dominant parameter that affect the cell performance. A Selective emitter structure with highly dopeds regions underneath the metal contacts, is widely known to be one of the most promising high-efficiency solution in solar cell processing In this paper the formation of a selective emitter, and the nickel silicide seed layer at the front side metallization of silicon cells is considered. After generating the nickel seed layer the contacts were thickened by Cu LIP (light induced plating) and by the formation of a plated Ni/Cu two step metallization on front contacts. In fabricating a Ni/Cu plating metallization cell with a selective emitter structure it has been shown that the cell efficiency can be increased by at least 0.2%.

에너지 변조 필터를 이용한 이중 에너지 콘빔 CT의 선량 평가 (Evaluation of Radiation Dose for Dual Energy CBCT Using Multi-Grid Device)

  • 주은빈;안소현;조삼주;금기창;이레나
    • 한국의학물리학회지:의학물리
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    • 제27권1호
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    • pp.31-36
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    • 2016
  • 본 연구에서는 이중에너지 영상을 획득하는 방법으로, 구리판을 이용한 에너지 변조 필터를 사용하였을 때의 선량을 계산 및 측정하였고, 기존의 다른 방법들과 선량을 비교하였다. 몬테칼로 전산모사를 이용하여 에너지 변조 필터에 의한 선량 변화를 평가하기 위하여 MCNPX를 사용하였다. 두경부, 흉부, 복부 촬영에 주로 사용되는 관전압인 80, 120 kVp에 대한 스펙트럼을 SPEC78 프로그램으로 생성하여 선원을 모사하였고, 구리 물질로 이루어진 에너지 변조 필터(밀도: $8.96g/cm^3$)는 두께를 0.5 mm부터 2.0 mm까지 0.5 mm 간격으로 변화시켜가면서 선원으로부터 20.0 cm 거리에 X-선 창을 절반만 가리도록 모델링 하였다. 몬테칼로 전산모사 값과 실제 선량 값을 비교하기 위해서는 교정 상수가 필요하므로, Gafchromic EBT3 필름에 알고 있는 선량을 조사한 후 판독하여 선량 교정 곡선을 획득하였다. 실험과 동일한 조건으로 MCNPX의 f6 tally로 획득한 결과값과 측정값 간의 선량 환산 인자는 $7.2*10^4cGy/output$으로 구해졌으며, 관전압 80 kVp과 관전류 6 mA의 조건으로 콘빔 CT 촬영 시, 평균 10.1 cGy (표준편차 2.7 cGy) 조사됨을 알 수 있었다. 에너지 변조 필터에 기반한 이중 에너지 영상 획득 기술을 적용한 본 연구에서는 이중 에너지 콘빔 CT 시스템의 선량이 단일 에너지 CT 시스템의 선량보다 33~40% 감소함을 알 수 있다. 또한, 에너지 변조 필터에서 발생한 산란선에 의한 선량 증가 효과는 거의 없었다. 따라서, 인체 내 물질 분별력이 우수하여 임상에 널리 응용되었던 기존 이중 에너지 CT 시스템의 상대적으로 피폭선량이 높다는 단점을 효과적으로 개선할 수 있다.