Time-of-Flight Image Reconstruction for Dual-Head Flat-Panel PET with TV Minimization Constraint
碩士 === 國立臺灣大學 === 生物產業機電工程學研究所 === 102 === Dual-head small-animal positron emission tomography (DHAPET) has characteristics of high detection sensitivity and flexible system configurations. However, the systemgeometry may result in severe parallax errors and undetected events along the trans-axial d...
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ndltd-TW-102NTU054150012016-03-09T04:24:02Z http://ndltd.ncl.edu.tw/handle/48253608400353465947 Time-of-Flight Image Reconstruction for Dual-Head Flat-Panel PET with TV Minimization Constraint 飛行時間信息與全域變異數最小化在雙平板正子攝影系統的應用與分析 Hung-Yi Chou 周宏屹 碩士 國立臺灣大學 生物產業機電工程學研究所 102 Dual-head small-animal positron emission tomography (DHAPET) has characteristics of high detection sensitivity and flexible system configurations. However, the systemgeometry may result in severe parallax errors and undetected events along the trans-axial directions, thus reducing the image quality.With the advancement of detector hardware, time-of-flight (TOF) of photons can be detected, which has demonstrated significant improvement in image quality, and can greatly benefit its use in research studies and clinics. Algorithms like total variation (TV) minimization methods that aim to compensate the effects of data truncation can be employed to reconstruct images with better resolution and quality. In this work, we will numerically compute the DHAPET system response matrix that includes TOF information and propose a TOF-PET reconstructionalgorithm based on TV-minimization. By applying both TOF information and TV minimization in the iterative algorithm, the reconstructed images can be anticipated to have improved quality with better spatial resolution. Chang-Ying Chou 周呈霙 2014 學位論文 ; thesis 52 en_US |
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碩士 === 國立臺灣大學 === 生物產業機電工程學研究所 === 102 === Dual-head small-animal positron emission tomography (DHAPET) has characteristics of high detection sensitivity and flexible system configurations. However, the systemgeometry may result in severe parallax errors and undetected events along the trans-axial directions, thus reducing the image quality.With the advancement of detector hardware, time-of-flight (TOF) of photons can be detected, which has demonstrated significant improvement in image quality, and can greatly benefit its use in research studies and clinics. Algorithms like total variation (TV) minimization methods that aim to compensate the effects of data truncation can be employed to reconstruct images with better resolution and quality. In this work, we will numerically compute the DHAPET system response matrix that includes TOF information and propose a TOF-PET reconstructionalgorithm based on TV-minimization. By applying both TOF information and TV minimization in the iterative algorithm, the reconstructed images can be anticipated to have improved quality with better spatial resolution.
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author2 |
Chang-Ying Chou |
author_facet |
Chang-Ying Chou Hung-Yi Chou 周宏屹 |
author |
Hung-Yi Chou 周宏屹 |
spellingShingle |
Hung-Yi Chou 周宏屹 Time-of-Flight Image Reconstruction for Dual-Head Flat-Panel PET with TV Minimization Constraint |
author_sort |
Hung-Yi Chou |
title |
Time-of-Flight Image Reconstruction for Dual-Head Flat-Panel PET with TV Minimization Constraint |
title_short |
Time-of-Flight Image Reconstruction for Dual-Head Flat-Panel PET with TV Minimization Constraint |
title_full |
Time-of-Flight Image Reconstruction for Dual-Head Flat-Panel PET with TV Minimization Constraint |
title_fullStr |
Time-of-Flight Image Reconstruction for Dual-Head Flat-Panel PET with TV Minimization Constraint |
title_full_unstemmed |
Time-of-Flight Image Reconstruction for Dual-Head Flat-Panel PET with TV Minimization Constraint |
title_sort |
time-of-flight image reconstruction for dual-head flat-panel pet with tv minimization constraint |
publishDate |
2014 |
url |
http://ndltd.ncl.edu.tw/handle/48253608400353465947 |
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