Optimization spectral domain optical coherence microscopy system
碩士 === 長庚大學 === 電機工程學系 === 103 === Optical imaging technique has the advantage of biological tissue toproduce a non-invasive imaging and other faults.In this paper, we establish a set of frequency-domain optical coherence microscopy system to obtain backscatter signal samples.And use the low co-homo...
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ndltd-TW-103CGU054420082016-07-31T04:22:27Z http://ndltd.ncl.edu.tw/handle/71591302747442395314 Optimization spectral domain optical coherence microscopy system 最佳化頻譜式光學同調顯微系統 Yu Sheng Cheng 鄭育昇 碩士 長庚大學 電機工程學系 103 Optical imaging technique has the advantage of biological tissue toproduce a non-invasive imaging and other faults.In this paper, we establish a set of frequency-domain optical coherence microscopy system to obtain backscatter signal samples.And use the low co-homology light in the different nature of the organization, to obtain tissue backscatter signals of different refractive index, resulting in structural imaging reconstruction organizations. In this paper, we used the mirror to do a single-point measurement, measurement of transverse resolution system.And by wavelength calibration, improve axial resolution.Then use Gaussian window and signal decile analysis and the depth of focus and the reference terminal reflectivity,measuring the system sensitivity. Beside, by comparing the differences between the experimental and theoretical values, we can understand the optimal performance for our system.In addition, the technology was using in taking the distribution of images within the egg cells of zebra-fish effectively. C. K. Lee 李正匡 2015 學位論文 ; thesis 62 |
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碩士 === 長庚大學 === 電機工程學系 === 103 === Optical imaging technique has the advantage of biological tissue toproduce a non-invasive imaging and other faults.In this paper, we establish a set of frequency-domain optical coherence microscopy system to obtain backscatter signal samples.And use the low co-homology light in the different nature of the organization, to obtain tissue backscatter signals of different refractive index, resulting in structural imaging reconstruction organizations.
In this paper, we used the mirror to do a single-point measurement, measurement of transverse resolution system.And by wavelength calibration, improve axial resolution.Then use Gaussian window and signal decile analysis and the depth of focus and the reference terminal reflectivity,measuring the system sensitivity. Beside, by comparing the differences between the experimental and theoretical values, we can understand the optimal performance for our system.In addition, the technology was using in taking the distribution of images within the egg cells of zebra-fish effectively.
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C. K. Lee |
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C. K. Lee Yu Sheng Cheng 鄭育昇 |
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Yu Sheng Cheng 鄭育昇 |
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Yu Sheng Cheng 鄭育昇 Optimization spectral domain optical coherence microscopy system |
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Yu Sheng Cheng |
title |
Optimization spectral domain optical coherence microscopy system |
title_short |
Optimization spectral domain optical coherence microscopy system |
title_full |
Optimization spectral domain optical coherence microscopy system |
title_fullStr |
Optimization spectral domain optical coherence microscopy system |
title_full_unstemmed |
Optimization spectral domain optical coherence microscopy system |
title_sort |
optimization spectral domain optical coherence microscopy system |
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2015 |
url |
http://ndltd.ncl.edu.tw/handle/71591302747442395314 |
work_keys_str_mv |
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