Interactive 3-dimensional segmentation of MRI data in personal computer environment
We describe a method of interactive three-dimensional segmentation and visualization for anatomical magnetic resonance imaging (MRI) data in a personal computer environment. The visual feedback necessary during 3-D segmentation was provided by a ray casting algorithm, which was designed to allow use...
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th-mahidol.268982018-09-07T16:53:07Z Interactive 3-dimensional segmentation of MRI data in personal computer environment Seung Schik Yoo Chang Uk Lee Byung Gil Choi Pairash Saiviroonporn The Catholic University of Korea Brigham and Women's Hospital Mahidol University Neuroscience We describe a method of interactive three-dimensional segmentation and visualization for anatomical magnetic resonance imaging (MRI) data in a personal computer environment. The visual feedback necessary during 3-D segmentation was provided by a ray casting algorithm, which was designed to allow users to interactively decide the visualization quality depending on the task-requirement. Structures such as gray matter, white matter, and facial skin from T1-weighted high-resolution MRI data were segmented and later visualized with surface rendering. Personal computers with central processing unit (CPU) speeds of 266, 400, and 700 MHz, were used for the implementation. The 3-D visualization upon each execution of the segmentation operation was achieved in the order of 2 s with a 700 MHz CPU. Our results suggest that 3-D volume segmentation with semi real-time visual feedback could be effectively implemented in a PC environment without the need for dedicated graphics processing hardware. © 2001 Elsevier Science B.V. All rights reserved. 2018-09-07T09:53:07Z 2018-09-07T09:53:07Z 2001-11-15 Article Journal of Neuroscience Methods. Vol.112, No.1 (2001), 75-82 10.1016/S0165-0270(01)00470-8 01650270 2-s2.0-0035889774 https://repository.li.mahidol.ac.th/handle/123456789/26898 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=0035889774&origin=inward |
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Neuroscience Seung Schik Yoo Chang Uk Lee Byung Gil Choi Pairash Saiviroonporn Interactive 3-dimensional segmentation of MRI data in personal computer environment |
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We describe a method of interactive three-dimensional segmentation and visualization for anatomical magnetic resonance imaging (MRI) data in a personal computer environment. The visual feedback necessary during 3-D segmentation was provided by a ray casting algorithm, which was designed to allow users to interactively decide the visualization quality depending on the task-requirement. Structures such as gray matter, white matter, and facial skin from T1-weighted high-resolution MRI data were segmented and later visualized with surface rendering. Personal computers with central processing unit (CPU) speeds of 266, 400, and 700 MHz, were used for the implementation. The 3-D visualization upon each execution of the segmentation operation was achieved in the order of 2 s with a 700 MHz CPU. Our results suggest that 3-D volume segmentation with semi real-time visual feedback could be effectively implemented in a PC environment without the need for dedicated graphics processing hardware. © 2001 Elsevier Science B.V. All rights reserved. |
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The Catholic University of Korea |
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The Catholic University of Korea Seung Schik Yoo Chang Uk Lee Byung Gil Choi Pairash Saiviroonporn |
format |
Article |
author |
Seung Schik Yoo Chang Uk Lee Byung Gil Choi Pairash Saiviroonporn |
author_sort |
Seung Schik Yoo |
title |
Interactive 3-dimensional segmentation of MRI data in personal computer environment |
title_short |
Interactive 3-dimensional segmentation of MRI data in personal computer environment |
title_full |
Interactive 3-dimensional segmentation of MRI data in personal computer environment |
title_fullStr |
Interactive 3-dimensional segmentation of MRI data in personal computer environment |
title_full_unstemmed |
Interactive 3-dimensional segmentation of MRI data in personal computer environment |
title_sort |
interactive 3-dimensional segmentation of mri data in personal computer environment |
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2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/26898 |
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1763491477153906688 |