Liquid Crystal Devices for Improving Captured Resolution of Integral Image Microscope
碩士 === 國立交通大學 === 照明與能源光電研究所 === 102 === From then till now, people never stop exploring tiny things. According to the classification of microscope, the purpose of microscopes are not only limited in observation but also used in detection and analysis. In recent years, with the progress of three dim...
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ndltd-TW-102NCTU53990352015-10-14T00:18:37Z http://ndltd.ncl.edu.tw/handle/64089485208765196295 Liquid Crystal Devices for Improving Captured Resolution of Integral Image Microscope 結合液晶元件達到解析度提升之三維積分影像顯微鏡 Chu, Wen-Chun 朱文君 碩士 國立交通大學 照明與能源光電研究所 102 From then till now, people never stop exploring tiny things. According to the classification of microscope, the purpose of microscopes are not only limited in observation but also used in detection and analysis. In recent years, with the progress of three dimension visualization, researchers pay more attention on how to combine the three dimensional information with microscopy to render high resolution three dimensional model. Both conventional optical and electron microscopy are no longer useful. Although confocal microscope can form three dimensional models by scanning the object, it is no debut a mechanical method. Furthermore, traditional light field microscope can reconstruct perspective view due to more angle information, the resolution is limited. In this thesis, a new integral image microscope system with LC devices was proposed. We introduced an axial scanning system by using electric controlled LC lens with afocal relay lens so that the three dimensional model can be formed by applied different operating voltage. We also designed LC plates to place in light field system. The resolution of integral image microscope can be improved by combining images with displacement. Moreover, by using LC material, we can easily make a new device which combines LC lens and LC plate, so the space can be reduce. Finally, we can perform an improving captured resolution of integral image microscope. Huang, Yi-Pai Kuo, Cheng-Huang 黃乙白 郭政煌 2014 學位論文 ; thesis 73 en_US |
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碩士 === 國立交通大學 === 照明與能源光電研究所 === 102 === From then till now, people never stop exploring tiny things. According to the classification of microscope, the purpose of microscopes are not only limited in observation but also used in detection and analysis. In recent years, with the progress of three dimension visualization, researchers pay more attention on how to combine the three dimensional information with microscopy to render high resolution three dimensional model. Both conventional optical and electron microscopy are no longer useful. Although confocal microscope can form three dimensional models by scanning the object, it is no debut a mechanical method. Furthermore, traditional light field microscope can reconstruct perspective view due to more angle information, the resolution is limited.
In this thesis, a new integral image microscope system with LC devices was proposed. We introduced an axial scanning system by using electric controlled LC lens with afocal relay lens so that the three dimensional model can be formed by applied different operating voltage. We also designed LC plates to place in light field system. The resolution of integral image microscope can be improved by combining images with displacement. Moreover, by using LC material, we can easily make a new device which combines LC lens and LC plate, so the space can be reduce. Finally, we can perform an improving captured resolution of integral image microscope.
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author2 |
Huang, Yi-Pai |
author_facet |
Huang, Yi-Pai Chu, Wen-Chun 朱文君 |
author |
Chu, Wen-Chun 朱文君 |
spellingShingle |
Chu, Wen-Chun 朱文君 Liquid Crystal Devices for Improving Captured Resolution of Integral Image Microscope |
author_sort |
Chu, Wen-Chun |
title |
Liquid Crystal Devices for Improving Captured Resolution of Integral Image Microscope |
title_short |
Liquid Crystal Devices for Improving Captured Resolution of Integral Image Microscope |
title_full |
Liquid Crystal Devices for Improving Captured Resolution of Integral Image Microscope |
title_fullStr |
Liquid Crystal Devices for Improving Captured Resolution of Integral Image Microscope |
title_full_unstemmed |
Liquid Crystal Devices for Improving Captured Resolution of Integral Image Microscope |
title_sort |
liquid crystal devices for improving captured resolution of integral image microscope |
publishDate |
2014 |
url |
http://ndltd.ncl.edu.tw/handle/64089485208765196295 |
work_keys_str_mv |
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