• 제목/요약/키워드: surface doses

검색결과 245건 처리시간 0.03초

투시 검사 시 체위 변화에 따른 입사표면선량의 평가 연구 (An Evaluative Study on ESD(Entrance Surface Dose) by Posture Changes for Fluoroscopy)

  • 양해두;홍선숙;박은성;성민숙;하동윤
    • 대한디지털의료영상학회논문지
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    • 제13권4호
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    • pp.177-183
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    • 2011
  • This study intends to investigate patients' exact exposure doses by comparatively measuring ESD (Entrance Surface Dose) with the DAP meter, which excludes scattered rays, and ESD with the Xi multifunction meter, which includes scattered rays, by posture changes for Esophagography test and UGI test. The materialwere examined through Sonialvision-SafireII SPEC overtube system. ESD was measured by using the DAP meter, and as a tool to measure ESD including scattered rays on the plane of incidence of human phantom, the Xi multifunction meter was used. The average fluoroscopic time of Esophagography test was 4.192 minutes and the average number of images was 47.7, while the average fluoroscopic time of UGI test was 6.881 minutes and the average number of images was 37.8. The ratios of the incident dose of DAP meter and the ESD of Xi meter were calculated bydividing the fluoroscopic time and the number of images by each posture change. As for Esophagography test, the dose increased by 21.6~55.5% in the fluoroscopic test and by 4.8~24.7% in the spot test. In the front spot test, however, the does increased by as little as 5.3%. As for UGI test, the dose increased by 21.1~49.5% in the fluoroscopic test and by 10.1~34.9% in the spot test. It is expected that measuring doses in consideration of scattered rays by posture changes will be an important index in evaluating and managing patients' exact exposure doses for each test above. Furthermore, it is judged that this sort of study is inevitable and desirable to reduce patients' exposure doses after all.

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유전자 재조합 B형 간염 바이러스 표면 항원, CJC-50100의 일반약리작용 (General Pharmacology of CJC-50100, a Recombinant Hepatitis B Virus Surface Antigen)

  • 정성학;최재묵;이남중;전형수;김연희;김재승;하석훈;김영훈;이나경
    • Biomolecules & Therapeutics
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    • 제9권1호
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    • pp.55-62
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    • 2001
  • CJC-50100 is a recombinant hepatitis B virus surface antigen (HBsAg) expressed in yeast. The general pharmacological properties of CJC-50100 were evaluated in mice, rats, dogs and isolated guinea pig ileum. The doses were 0.33~33.3 $\mu$g/kg i.m. for mice and rats and 3.3~9.9 $\mu$g/kg i.v. for dogs. The concentrations of 0.002~0.02 $\mu$g/ml were used for the assay with guinea pig ileum. Intramuscular administration of CJC-50100 at the doses did not alter general behavior and the responses for central nervous system, smooth muscle, gastrointestinal system, cardiovascular and respiratory system, and water and electrolytes excretion. In summary, CJC-50100 had no pharmacological effect in these studies even up to the 100-fold of the expected clinical dose, 20 $\mu$g/man/60 kg.

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이온도움 반응법을 이용한 스펙트라 섬유의 표면처리에 대한 연구 (A Study on the Surface Treatment of Spectra Fibers Using an ion Assisted Reaction Method)

  • 이경엽;신동혁;지창헌
    • 한국표면공학회지
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    • 제35권5호
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    • pp.319-324
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    • 2002
  • It is known that ion-assisted reaction method is effective for the surface modification of polymers. The surface treatment of Spectra fibers using the ion-assisted reaction method was investigated in the present study The Spectra fibers were treated by $Ar^{+}$ / ion irradiation under oxygen environment. The treatment was carried out at different $Ar^{+}$ ion doses. The$ Ar^{+ }$ /ion doses used were $6$\times$10^{15}$ , $1$\times$10^{16}$ , $5$\times$10^{16}$ , $1$\times$10^{17}$ / ions/$\m^2$. Optimal $Ar^{+}$ ion dose in the treatment of Spectra fibers was determined by measuring the tensile strength and modulus of Spectra/vinylester composites as a function of ion dose. It was found that the optimal ion dose was $1$\times$10^{16}$ions/$\m^2$. It was also found from the scanning electron microscope examination that the surface-treatment improved adhesion between fibers and vinylester resin.

The Effect of Electron Beam Irradiation on Chemical and Morphological Properties of Hansan Ramie Fibers

  • Lee, Jung Soon
    • 한국의류산업학회지
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    • 제15권3호
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    • pp.430-436
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    • 2013
  • The purpose of this study investigates the effects of electron beam(EB) irradiation on the chemical and morphological properties of Hansan ramie fiber. Hansan ramie fibers were irradiated with electron beam doses of 0, 1, 3, 5 and 10kGy. The effect of electron beam irradiation on the chemical components of fibers as well as the surface chemical and morphological properties were investigated using chemical component analysis methods based on TAPPI standards, XPS, and SEM. The results indicate that the surface layers can be removed under suitable EB irradiation doses. Alcohol-benzene extraction and lignin content increases gradually with an increase in EB irradiation and reaching a maximum at an EB dose of 3kGy, and decreases at 10kGy. The surface chemical changes measured by XPS corresponded to the chemical composition analysis results. The C1 peak and the O/C ratio decreased with the removal of the multi-layer and primary layer by EB irradiation. The SEM images show the inter-fibrillar structure etched by EB irradiation up to 5kGy. At 10kGy, the surface structure of the ramie fiber shows highly aligned and distinctive striations in a longitudinal direction. The removal of these exterior layers of the fiber was confirmed by changes in surface morphology as observed in SEM images.

Formation and Growth of Cu Nanocrystallite in Si(100) by ion Implantation

  • Kim, H.K.;Kim, S.H.;Moon, D.W.
    • 한국진공학회지
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    • 제4권S2호
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    • pp.115-130
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    • 1995
  • In order to produce Cu nanocrystallite in silicon wafer, the implantation technique was used. The samples of silicon (100) wafers were implanted by $Cu^+$ ions at 100 keV and with varying the doses at room temperature. Post-annealing was performed at $800^{\circ}C$ with Ar environment. To investigate the formation of Cu nanocrystallite with ion doses and growth process by thermal annealing, SIMS and HRTEM(high resolution transmission electron microscopy)spectra were studied.

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Developing a Virus-Binding Bacterium Expressing Mx Protein on the Bacterial Surface to Prevent Grouper Nervous Necrosis Virus Infection

  • Lin, Chia-Hua;Chen, Jun-Jie;Cheng, Chiu-Min
    • Journal of Microbiology and Biotechnology
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    • 제31권8호
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    • pp.1088-1097
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    • 2021
  • Grouper nervous necrosis virus (GNNV) infection causes mass grouper mortality, leading to substantial economic loss in Taiwan. Traditional methods of controlling GNNV infections involve the challenge of controlling disinfectant doses; low doses are ineffective, whereas high doses may cause environmental damage. Identifying potential methods to safely control GNNV infection to prevent viral outbreaks is essential. We engineered a virus-binding bacterium expressing a myxovirus resistance (Mx) protein on its surface for GNNV removal from phosphate-buffered saline (PBS), thus increasing the survival of grouper fin (GF-1) cells. We fused the grouper Mx protein (which recognizes and binds to the coat protein of GNNV) to the C-terminus of outer membrane lipoprotein A (lpp-Mx) and to the N-terminus of a bacterial autotransporter adhesin (Mx-AIDA); these constructs were expressed on the surfaces of Escherichia coli BL21 (BL21/lpp-Mx and BL21/Mx-AIDA). We examined bacterial surface expression capacity and GNNV binding activity through enzyme-linked immunosorbent assay; we also evaluated the GNNV removal efficacy of the bacteria and viral cytotoxicity after bacterial adsorption treatment. Although both constructs were successfully expressed, only BL21/lpp-Mx exhibited GNNV binding activity; BL21/lpp-Mx cells removed GNNV and protected GF-1 cells from GNNV infection more efficiently. Moreover, salinity affected the GNNV removal efficacy of BL21/lpp-Mx. Thus, our GNNV-binding bacterium is an efficient microparticle for removing GNNV from 10‰ brackish water and for preventing GNNV infection in groupers.

EQUIVALENT DOSE FROM SECONDARY NEUTRONS AND SCATTER PHOTONS IN ADVANCE RADIATION THERAPY TECHNIQUES WITH 15 MV PHOTON BEAMS

  • Ayuthaya, Isra Israngkul Na;Suriyapee, Sivalee;Pengvanich, Phongpheath
    • Journal of Radiation Protection and Research
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    • 제40권3호
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    • pp.147-154
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    • 2015
  • The scatter photons and photoneutrons from high energy photon beams (more than 10 MV) will increase the undesired dose to the patient and the staff working in linear accelerator room. This undesired dose which is found at out-of-field area can increase the probability of secondary malignancy. The purpose of this study is to determine the equivalent dose of scatter photons and neutrons generated by 3 different treatment techniques: 3D-conformal, intensity modulated radiation therapy (IMRT) and volumetric modulated arc therapy (VMAT). The measurement was performed using two types of the optically stimulation luminescence detectors (OSL and OSLN) in the Alderson Rando phantom that was irradiated by 3 different treatment techniques following the actual prostate cancer treatment plans. The scatter photon and neutron equivalent dose were compared among the 3 treatments techniques at the surface in the out-of-field area and the critical organs. Maximum equivalent dose of scatter photons and neutrons was found when using the IMRT technique. The scatter neutrons showed average equivalent doses of 0.26, 0.63 and $0.31mSv{\cdot}Gy^{-1}$ at abdominal surface region which was 20 cm from isocenter for 3D, IMRT and VMAT, respectively. The scattered photons equivalent doses were 6.94, 10.17 and $6.56mSv{\cdot}Gy^{-1}$ for 3D, IMRT and VMAT, respectively. For the 5 organ dose measurements, the scattered neutron and photon equivalent doses in out of field from the IMRT plan were highest. The result revealed that the scatter equivalent doses for neutron and photon were higher for IMRT. So the suitable treatment techniques should be selected to benefit the patient and the treatment room staff.

토모테라피 시 종양의 위치에 따른 피부선량 검증 (Verification of skin dose according to the location of tumor in Tomotherapy)

  • 윤보름;박수연;박병석;김종식;송기원
    • 대한방사선치료학회지
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    • 제26권2호
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    • pp.273-280
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    • 2014
  • 목 적 : 토모테라피를 이용한 방사선치료 시 종양의 위치 변화에 따른 피부선량을 알아보기 위해 Gafchromic EBT3 film을 이용하여 피부선량을 측정하고, 치료계획 선량과 비교하여 그 차이를 알아보고자 한다. 대상 및 방법 : 피부선량 측정을 위한 팬톰은 I'm RT Phantom(IBA Dosimetry, Germany)을 사용하였으며, 2.5 mm CT영상을 획득한 후 Pinnacle(ver9.2, Philips Medical System, USA)을 이용하여 종양의 위치와 피부 선량 측정 점을 설정하였다. 종양(40.75 cm3)의 위치는 팬톰의 중앙과 표면으로부터 5 mm, 10 mm 거리로, 토모테이블 감약을 고려하여 팬톰의 천장과 바닥방향으로 대칭하게 각각 설정하였으며, 피부 선량의 측정점은 표면으로부터 3 mm, 5 mm 두께로 3회 반복 측정하였다. TomoHD(TomoHD treatment system, Tomotherapy Inc., Madison, Wisconsin, USA)를 이용하여 토모테라피 치료 계획을 수립하고, Gafchromic EBT3 필름을 팬톰 내 삽입하여 3회 반복 측정한 뒤 측정된 피부 선량과 치료계획 선량을 비교하였다. 결 과 : 팬톰의 상부 측 피부선량은 종양이 중앙에 위치한 경우 5 mm, 3 mm에서 7.53 cGy, 7.25 cGy였으며, 천장 측 피부로부터 5 mm 떨어져 위치한 경우 각각 18.06 cGy, 16.89 cGy, 10mm 떨어진 경우 각각 20.37 cGy, 18.27 cGy의 값을 나타내었다. 팸톰 하부 측 피부선량은 종양이 중앙에 위치한 경우 5 mm, 3 mm에서 각각 8.82 cGy, 8.29 cGy였으며, 하부 측 피부로부터 5mm 떨어져 위치한 경우 각각 21.69 cGy, 19.78 cGy, 10mm 떨어진 경우 각각 20.48 cGy, 19.57 cGy로 나타났다. 종양이 중앙에 위치한 경우의 피부 선량은 치료계획 시보다 3.2~17.1%이상 증가한 반면, 종양이 천장 측 5 mm에 위치한 경우 2.8~9.0%로 감소하였고, 토모테이블 방향으로 피부선량은 치료계획 선량에 비해 평균 11%이상 증가함을 보였다. 결 론 : 이번 연구 결과 토모테라피를 위한 치료 계획 시 피부선량은 실제 피부선량과 오차가 발생하였으며, 특히 토모 테이블 방향으로의 피부 선량은 치료계획상의 피부선량보다 증가하는 것을 알 수 있었다. 따라서 토모 테이블과 근접하여 위치한 종양의 치료 시 정확한 선량 계산 시스템과 피부선량의 검증 노력이 필요할 것으로 사료된다.

Chest CT에서 Care Dose 4D+Care kV에 따른 화질과 입사표면선량 비교 (Comparisons of Image Quality and Entrance Surface Doses according to Care Dose 4D + Care kV in Chest CT)

  • 강은보
    • 한국방사선학회논문지
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    • 제16권1호
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    • pp.45-51
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    • 2022
  • 본 연구는 Chest CT에서 Care Dose 4D+Care kV System을 사용하여 촬영할 때와 CARE DOSE 4D 기능만을 사용했을 때, 그리고 Care Dose 4D와 관전압을 각각 80 kVp, 100 kVp, 120 kVp, 140 kVp로 변화를 주고 검사했을 때의 DLP값과 팬텀의 입사표면선량, 화질을 비교하여 최소의 선량으로 가장 최상의 화질을 유지할 수 있는 방법을 찾아보고자 하였다. DLP값은 Chest Care Dose 4D + Care kV semi 100으로 촬영하였을 때 6.727%, Chest Care Dose 4D + Care kV 로 촬영하였을 때 6.481% 감소하는 것으로 나타났다. Chest Non을 기준으로 입사표면선량에서 Chest Care Dose 4D + Care kV semi 100으로 검사하였을 때 16.519%, Chest Care Dose 4D + Care kV 로 검사하였을 때 15.705% 감소하는 것으로 나타났다. 영상의 화질에 대한 비교에서 Chest Non과 비교해서 Care Dose 4D + Care kV를 포함한 모든 촬영조건에서 SNR값과 CNR값을 비교한 결과 P>0.05로 유의한 차이가 없는 것으로 나타났다. Chest CT에서 Chest Care Dose 4D + Care kV를 사용해서 촬영한 결과 수동으로 kV와 mAS를 조정해서 얻은 최상의 조건의 결과 값과 비슷하게 피폭선량이 감소한 것으로 나타났으며, 영상의 SNR과 CNR에서도 유의한 차이가 없는 것으로 나타났다. Chest Care Dose 4D + Care kV 기능을 사용한다면 영상의 화질을 유지하면서 환자피폭을 줄일 수 있는 좋은 방법이라 생각된다.

6MV 선형가속기에서 Al/Cu에 관한 여과판 사용시 전자오염 감소에 관한 연구 (Reduction of Electron Contamination in Photon Beam by electron Filter in 6MV Linear Accelerator)

  • 이철수
    • 대한방사선치료학회지
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    • 제8권1호
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    • pp.41-54
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    • 1996
  • The secondary electrons developed by interaction between primary beam and a tray mounted for blocks in Megavoltage irradiation result in excess soft radiation dose to the surface layer. To reduce this electron contamination, electron filters have been used to be attached under a tray. Various filters with Cu and Al plates in six different thickness and Cu/Al combined plates in 3 different thickness were tested to measure the reduction rate of secondary electron contamination to the surface layer. The measurement to find optimal filter was performed on 6MV linear accelerator in $10 cm{\times}10 cm$ field size and fixed 78.5cm source to measurement points distance from surface to maximum build up point in 2mm intervals. The result was analyzed as the ratio of measured doses with using filters, to standard doses of measured open beam. The result of this study was fellowing : 1. The contaminated low energy radiation were mainly produced by blocking tray. 2. The surface absorbed dose was slowly increased by increasing irradiation field size but rapidly increased at field size above $15cm{\times}15cm$. 3. Al plate upto 2.5mm thickness used as a filter was found to be inadequate due to the failure of reduction of the surface absorbed dose below doses of the under surface upto the maximal build up. Cu 0.5mm plate and Cu 0.28mm/A1 1.5mm compound plate were found to be optimal filters. 4. By using these 2 filters, the absorbed dose to the surface were effectively reduced $5.5\%$ in field size $4cm{\times}4cm,\;11.3\%$ in field size $10cm{\times}10cm,\;22.3\%$ in field size $25cm{\times}25cm$. 5. In field size $10cm{\times}10cm$, the absorbed dose to the surface of irradiation was reduced by setting TSD 20cm at least,. but effective and enough dose reduction could be achieved by setting TSD 30cm as 2 optimal filters used. 6. More surface dose absorbed at TSD less than 7.4cm with a tray and filters together indicated that soft radiation was also developed by filters. 7. The variation of PDD by the different size of irradiation field was minimal as 2 optimal filters used. There was also not different in variation of PDD according to using any of two different filters. 8. PDD was not effected either by various TSD or by using the different filter among two.

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