• 제목/요약/키워드: Multi photon process

검색결과 13건 처리시간 0.019초

핵의학 영상기기의 최근 진보 (Recent Advances in Nuclear Medicine Imaging Instrumentation)

  • 정진호;최용;홍기조;민병준;호위;강지훈
    • Nuclear Medicine and Molecular Imaging
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    • 제42권2호
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    • pp.98-111
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    • 2008
  • This review introduces advances in clinical and pre-clinical single photon emission computed tomography (SPECT) and positron emission tomography (PET) providing noninvasive functional images of biological processes. Development of new collimation techniques such as multi-pinhole and slit-slat collimators permits the improvement of system spatial resolution and sensitivity of SPECT. Application specific SPECT systems using smaller and compact solid-state detector have been customized for myocardial perfusion imaging with higher performance. Combined SPECT/CT providing improved diagnostic and functional capabilities has been introduced. Advances in PET and CT instrumentation have been incorporated in the PET/CT design that provide the metabolic information from PET superimposed on the anatomic information from CT. Improvements in the sensitivity of PET have achieved by the fully 3D acquisition with no septa and the extension of axial field-of-view. With the development of faster scintillation crystals and electronics, time-of-flight (TOF) PET is now commercially available allowing the increase in the signal-to-noise ratio by incorporation of TOF information into the PET reconstruction process. Hybrid PET/SPECT/CT systems has become commercially available for molecular imaging in small animal models. The pre-clinical systems have improved spatial resolution using depth-of-interaction measurement and new collimators. The recent works on solid state detector and dual modality nuclear medicine instrumentations incorporating MRI and optical imagers will also be discussed.

multi-chromophore를 가지는 유기염료의 DSSC 광전변환거동 (Photovoltaic Properties of Dendritic Photosensitizers containing multi-chromophore for Dye-sensitized Solar Cells)

  • 김명석;천종훈;정대영;김재홍
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 춘계학술대회 초록집
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    • pp.117.2-117.2
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    • 2011
  • Since Gratzel and co-workers developed a new type of solar cell based on the nanocrystalline TiO2 electrode, dye-sensitized solar cells (DSSCs) have attracted considerable attention on account of their high solar energy-to-conversion efficiencies (11%), their easy manufacturing process with low cost production compared to conventional p-n junction solar cells. The mechanism of DSSC is based on the injection of electrons from the photoexcited dye into the conduction band of nanocrystalline TiO2. The oxidized dye is reduced by the hole injection process from either the hole counter or electrolyte. Thus, the electronic structures, such as HOMO, LUMO, and HOMO-LUMO gap, of dye molecule in DSSC are deeply related to the electron transfer by photoexcitation and redox potential. To date, high performance and good stability of DSSC based on Ru-dyes as a photosensitizer had been widely addressed in the literatures. DSSC with Ru-bipyridyl complexes (N3 and N719), and the black ruthenium dye have achieved power conversion efficiencies up to 11.2% and 10.4%, respectively. However, the Ru-dyes are facing the problem of manufacturing costs and environmental issues. In order to obtain even cheaper photosensitizers for DSSC, metal-free organic photosensitizers are strongly desired. Metal-free organic dyes offer superior molar extinction coefficients, low cost, and a diversity of molecular structures, compared to conventional Ru-dyes. Recently, novel photosensitizers such as coumarin, merocyanine, cyanine, indoline, hemicyanine, triphenylamine, dialkylaniline, bis(dimethylfluorenyl)-aminophenyl, phenothiazine, tetrahydroquinoline, and carbazole based dyes have achieved solar-to-electrical power conversion efficiencies up to 5-9%. On the other hand, organic dye molecules have large ${\pi}$-conjugated planner structures which would bring out strong molecular stacking in their solid-state and poor solubility in their media. It was well known that the molecular stacking of organic dyes could reduce the electron transfer pathway in opto-electronic devices, significantly. In this paper, we have studied on synthesis and characterization of dendritic organic dyes with different number of electron acceptor/anchoring moieties in the end of dendrimer. The photovoltaic performances and the incident photon-to-current (IPCE) of these dyes were measured to evaluate the effects of the dendritic strucuture on the open-circuit voltage and the short-circuit current.

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국립암센터의 양성자 치료를 위한 수동형 다엽 콜리메이터 개발 (Development of Manual Multi-Leaf Collimator for Proton Therapy in National Cancer Center)

  • 이누리;김태윤;강동윤;최재혁;정종휘;신동호;임영경;박정훈;김태현;이세병
    • 한국의학물리학회지:의학물리
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    • 제26권4호
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    • pp.250-257
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    • 2015
  • 양성자 치료를 위해서는 Snout이 부착된 받침대(gantry)를 사용하는데 빔의 형태를 만들기 위해 환자 종양의 크기와 거리에 맞게 황동 차폐체(aperture)가 많이 사용된다. 또한 빔의 거리를 보정하기 위해 PMMA를 이용한 거리 보상체도 사용된다. 이렇게 황동으로 만들어진 차폐체의 경우 가공하는데 많은 시간이 소요되며 비용 발생이 높다. 또한 치료 사용되었던 차폐체의 방사선 노출에 따라 재사용이 어렵다. 이러한 단점을 보안하기 위해 황동 차폐체 대신 X-선 치료에서 사용되는 수동형 다엽 콜리메이터 시스템을 도입하였다. 수동형 다업 콜리메이터는 여러 개의 황동판을 조립하여 차폐체를 제작하는 방식이다. 본 연구는 제작된 수동형 다엽 콜리메이터의 방사화 실험 및 필름을 이용해 선량측정을 진행하였다. 다엽 콜리메이터를 투과한 2차 발생 선량 1% 이하였으며, 여러 번의 230 MeV의 빔에서도 방사화가 2시간 이내에서 감소하였다. 이렇게 개발된 수동형 다엽 콜리메이터를 임상에 적용하여 일반 차폐체와 수동형 다엽 콜리메이터를 감마지표 분석을 했을 시 99.74%의 높은 일치도가 측정되었다. 또한, 일반 황동 차폐체에 비해 수동형 다엽 콜리메이터를 제작하는데 소요되는 비용과 시간을 1/10 이상 단축시킬 수 있다. 개발된 수동형 다엽 콜리메이터는 성공적으로 양성자 환자치료에 사용하고 있다.