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微观平面物体的三维成像技术
引用本文:张云翠,杨轶,吕桓林,曹冠英,张竞辉,邹念育.微观平面物体的三维成像技术[J].大连工业大学学报,2009,28(4).
作者姓名:张云翠  杨轶  吕桓林  曹冠英  张竞辉  邹念育
作者单位:大连工业大学,光子学研究所,辽宁,大连,116034
摘    要:利用偏振技术,设计出微观平面物体的三维放大成像系统,解决了特殊物体的三维放大成像问题。该系统主要包括显微成像和照明系统两个部分,系统放大倍数为100,采用LED作为照明系统光源,使物体在经过偏振器件和光学系统后的亮度满足人眼的要求。设计的显微系统的前工作距离为56 mm,满足系统的大于50 mm的设计要求。显微成像系统成像质量较高,空间分辨率达到0.004 mm,照明系统的像面平均照度为600 lx。

关 键 词:显微镜  三维成像  偏振

3-Dimension imaging technology of micro plane objective
ZHANG Yun-cui,YANG Yi,LV Huan-lin,CAO Guan-ying,ZHANG Jing-hui,ZOU Nian-yu.3-Dimension imaging technology of micro plane objective[J].Journal of Dalian Dalian Polytechnic University,2009,28(4).
Authors:ZHANG Yun-cui  YANG Yi  LV Huan-lin  CAO Guan-ying  ZHANG Jing-hui  ZOU Nian-yu
Abstract:A novel 3-dimension microscope imaging system is designed for special objective based on polarizing technology.Two parts contained in this system are microscope imaging and illumination.The system magnification is 100.LED is used as the lighting source to meet the brightness limit of our eyes for the light passing through the polarized elements and optical system.The front working distance of this system is 56 mm,which meets the requirement of 50 mm.The spatial resolution and average illumination intensity are 0.004 mm and 600 lx,respectively.
Keywords:microscope  3-dimesion imaging  polarize
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