Optimal Taguchi Method Utilizing Customized Reciprocated Dynamic Water Phantom of 128-Slice Computed Tomography:a Phantom Study
碩士 === 中臺科技大學 === 醫學影像暨放射科學系暨研究所 === 103 === In this study, Taguchi methods to evaluate the customized reciprocated dynamic water phantom to take 64-slice computed tomography have different scanning parameter to find the optimal image resolution. Residual length of the same tissue at different scann...
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ndltd-TW-103CTC007700242016-12-04T04:07:58Z http://ndltd.ncl.edu.tw/handle/91051643712480316316 Optimal Taguchi Method Utilizing Customized Reciprocated Dynamic Water Phantom of 128-Slice Computed Tomography:a Phantom Study 利用田口方法以自製往復性水假體最佳化128-slice CT之心臟影像解析度 Wang,Wan-Syun 王婉珣 碩士 中臺科技大學 醫學影像暨放射科學系暨研究所 103 In this study, Taguchi methods to evaluate the customized reciprocated dynamic water phantom to take 64-slice computed tomography have different scanning parameter to find the optimal image resolution. Residual length of the same tissue at different scanning parameter may variation to change image resolution .Research on the moving phantom take some speed and amplitude of 30 mm in the position ,computed tomography under different parameters. Taguchi methods analysis parameters produce different residual length, and find the major factor is rotation time , secondary is pitch ,minor factor is slice thickness . Furthermore, the optimized recommendation of the factors was also confirmed by the ANOVA and was shown above 99% confidence level in statistical significance. The optimized setting were: (1)0.3 sec rotation time, (2) 64*0.625 collimation , (3) 0.423 pitch, (4) 1.5 mm slice thickness. The recommended combination of the factors could successfully reduce the motion uncertainties of the heart image examination. Pan, Lung-Lwang 潘榕光 2015 學位論文 ; thesis 68 zh-TW |
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碩士 === 中臺科技大學 === 醫學影像暨放射科學系暨研究所 === 103 === In this study, Taguchi methods to evaluate the customized reciprocated dynamic water phantom to take 64-slice computed tomography have different scanning parameter to find the optimal image resolution. Residual length of the same tissue at different scanning parameter may variation to change image resolution .Research on the moving phantom take some speed and amplitude of 30 mm in the position ,computed tomography under different parameters. Taguchi methods analysis parameters produce different residual length, and find the major factor is rotation time , secondary is pitch ,minor factor is slice thickness . Furthermore, the optimized recommendation of the factors was also confirmed by the ANOVA and was shown above 99% confidence level in statistical significance. The optimized setting were: (1)0.3 sec rotation time, (2) 64*0.625 collimation , (3) 0.423 pitch, (4) 1.5 mm slice thickness. The recommended combination of the factors could successfully reduce the motion uncertainties of the heart image examination.
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author2 |
Pan, Lung-Lwang |
author_facet |
Pan, Lung-Lwang Wang,Wan-Syun 王婉珣 |
author |
Wang,Wan-Syun 王婉珣 |
spellingShingle |
Wang,Wan-Syun 王婉珣 Optimal Taguchi Method Utilizing Customized Reciprocated Dynamic Water Phantom of 128-Slice Computed Tomography:a Phantom Study |
author_sort |
Wang,Wan-Syun |
title |
Optimal Taguchi Method Utilizing Customized Reciprocated Dynamic Water Phantom of 128-Slice Computed Tomography:a Phantom Study |
title_short |
Optimal Taguchi Method Utilizing Customized Reciprocated Dynamic Water Phantom of 128-Slice Computed Tomography:a Phantom Study |
title_full |
Optimal Taguchi Method Utilizing Customized Reciprocated Dynamic Water Phantom of 128-Slice Computed Tomography:a Phantom Study |
title_fullStr |
Optimal Taguchi Method Utilizing Customized Reciprocated Dynamic Water Phantom of 128-Slice Computed Tomography:a Phantom Study |
title_full_unstemmed |
Optimal Taguchi Method Utilizing Customized Reciprocated Dynamic Water Phantom of 128-Slice Computed Tomography:a Phantom Study |
title_sort |
optimal taguchi method utilizing customized reciprocated dynamic water phantom of 128-slice computed tomography:a phantom study |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/91051643712480316316 |
work_keys_str_mv |
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