• Title/Summary/Keyword: 3차원 광학 측정

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Development of Quality Assurance Software for $PRESAGE^{REU}$ Gel Dosimetry ($PRESAGE^{REU}$ 겔 선량계의 분석 및 정도 관리 도구 개발)

  • Cho, Woong;Lee, Jaegi;Kim, Hyun Suk;Wu, Hong-Gyun
    • Progress in Medical Physics
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    • v.25 no.4
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    • pp.233-241
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    • 2014
  • The aim of this study is to develop a new software tool for 3D dose verification using $PRESAGE^{REU}$ Gel dosimeter. The tool included following functions: importing 3D doses from treatment planning systems (TPS), importing 3D optical density (OD), converting ODs to doses, 3D registration between two volumetric data by translational and rotational transformations, and evaluation with 3D gamma index. To acquire correlation between ODs and doses, CT images of a $PRESAGE^{REU}$ Gel with cylindrical shape was acquired, and a volumetric modulated arc therapy (VMAT) plan was designed to give radiation doses from 1 Gy to 6 Gy to six disk-shaped virtual targets along z-axis. After the VMAT plan was delivered to the targets, 3D OD data were reconstructed from 512 projection data from $Vista^{TM}$ optical CT scanner (Modus Medical Devices Inc, Canada) per every 2 hours after irradiation. A curve for converting ODs to doses was derived by comparing TPS dose profile to OD profile along z-axis, and the 3D OD data were converted to the absorbed doses using the curve. Supra-linearity was observed between doses and ODs, and the ODs were decayed about 60% per 24 hours depending on their magnitudes. Measured doses from the $PRESAGE^{REU}$ Gel were well agreed with the TPS doses at central region, but large under-doses were observed at peripheral region at the cylindrical geometry. Gamma passing rate for 3D doses was 70.36% under the gamma criteria of 3% of dose difference and 3 mm of distance to agreement. The low passing rate was resulted from the mismatching of the refractive index between the PRESAGE gel and oil bath in the optical CT scanner. In conclusion, the developed software was useful for 3D dose verification from PRESAGE gel dosimetry, but further improvement of the Gel dosimetry system were required.

Shape measurement of three-dimensional object using interferometer (광학 간섭을 이용한 형상 측정)

  • Shim, Jae-We;Shin, Youl;HwangBo, Soung
    • Proceedings of the KIEE Conference
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    • 2002.07c
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    • pp.1927-1928
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    • 2002
  • 기존의 3차원 형상 측정법은 대부분 접촉식이기때문에 피측정물이 손상이 입거나 Probe의 보정이 필요하거나 Probe가 측정면에 직접 닿지 않는 경우는 측정이 불가능하였다. 또한 많은 점을 측정할 경우측정시간이 많이 걸린다. 물체의 크기가 크거나 측정하고자하는 물체가 무를 경우에는 적합하지 못하다. 이러한 단점은 보완하기 위하여 비접촉식인 측정법 이용한 관측이 대두되게 되었다. 비접촉식에 의한 관측은 물체의 표면을 손상시키지 않으면서 정밀하고 고품질이 요구되는 제품 검사 및 자동화 기술의 발달로 인하여 생산 산업 분야에 이용되고 있다 이에 비접촉식 방식에서도 광학간섭의 하나인 마이켈슨 간섭계를 이용하여 간섭무늬 패턴으로 물체 이미지를 분석하고 CCD카메라에서 영상을 얻어 3차원 물체를 해석하였다.

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Simultaneous Determination of Both Surface Profiles of a Bifocal Lens Using Dual-Wavelength Transmission Deflectometry With Liquid (액체와 2 파장 투과형 편향법을 이용한 다초점 렌즈 양면 프로파일 동시측정)

  • Shin, Sanghoon;Yu, Younghun
    • Korean Journal of Optics and Photonics
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    • v.26 no.3
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    • pp.147-154
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    • 2015
  • We propose a method for simultaneously measuring the front and back surface profiles of transparent optical components. The proposed method combines dual-wavelength transmission deflectometry with liquids to record distorted phases at different wavelengths, and then numerically reconstructs the three-dimensional phase information to image the front and back surfaces of the lens. We propose a theoretical model to determine the surface information, and a bifocal lens is experimentally investigated. Unlike conventional transmission deflectometry, our proposed method supports direct observation of the front and back surface profiles of the optical elements.