Semi-automatic liver segmentation based on probabilistic models and anatomical constraints
Abstract Segmenting a liver and its peripherals from abdominal computed tomography is a crucial step toward computer aided diagnosis and therapeutic intervention. Despite the recent advances in computing methods, faithfully segmenting the liver has remained a challenging task, due to indefinite boun...
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doaj-4b391c98b3e840d3bffc514e28750de12021-03-21T12:32:57ZengNature Publishing GroupScientific Reports2045-23222021-03-0111111910.1038/s41598-021-85436-7Semi-automatic liver segmentation based on probabilistic models and anatomical constraintsDoan Cong Le0Krisana Chinnasarn1Jirapa Chansangrat2Nattawut Keeratibharat3Paramate Horkaew4School of Computer Engineering, Institute of Engineering, Suranaree University of TechnologyDepartment of Computer Science, Faculty of Informatics, Burapha UniversitySchool of Radiology, Institute of Medicine, Suranaree University of TechnologySchool of Surgery, Institute of Medicine, Suranaree University of TechnologySchool of Computer Engineering, Institute of Engineering, Suranaree University of TechnologyAbstract Segmenting a liver and its peripherals from abdominal computed tomography is a crucial step toward computer aided diagnosis and therapeutic intervention. Despite the recent advances in computing methods, faithfully segmenting the liver has remained a challenging task, due to indefinite boundary, intensity inhomogeneity, and anatomical variations across subjects. In this paper, a semi-automatic segmentation method based on multivariable normal distribution of liver tissues and graph-cut sub-division is presented. Although it is not fully automated, the method minimally involves human interactions. Specifically, it consists of three main stages. Firstly, a subject specific probabilistic model was built from an interior patch, surrounding a seed point specified by the user. Secondly, an iterative assignment of pixel labels was applied to gradually update the probabilistic map of the tissues based on spatio-contextual information. Finally, the graph-cut model was optimized to extract the 3D liver from the image. During post-processing, overly segmented nodal regions due to fuzzy tissue separation were removed, maintaining its correct anatomy by using robust bottleneck detection with adjacent contour constraint. The proposed system was implemented and validated on the MICCAI SLIVER07 dataset. The experimental results were benchmarked against the state-of-the-art methods, based on major clinically relevant metrics. Both visual and numerical assessments reported herein indicated that the proposed system could improve the accuracy and reliability of asymptomatic liver segmentation.https://doi.org/10.1038/s41598-021-85436-7 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Doan Cong Le Krisana Chinnasarn Jirapa Chansangrat Nattawut Keeratibharat Paramate Horkaew |
spellingShingle |
Doan Cong Le Krisana Chinnasarn Jirapa Chansangrat Nattawut Keeratibharat Paramate Horkaew Semi-automatic liver segmentation based on probabilistic models and anatomical constraints Scientific Reports |
author_facet |
Doan Cong Le Krisana Chinnasarn Jirapa Chansangrat Nattawut Keeratibharat Paramate Horkaew |
author_sort |
Doan Cong Le |
title |
Semi-automatic liver segmentation based on probabilistic models and anatomical constraints |
title_short |
Semi-automatic liver segmentation based on probabilistic models and anatomical constraints |
title_full |
Semi-automatic liver segmentation based on probabilistic models and anatomical constraints |
title_fullStr |
Semi-automatic liver segmentation based on probabilistic models and anatomical constraints |
title_full_unstemmed |
Semi-automatic liver segmentation based on probabilistic models and anatomical constraints |
title_sort |
semi-automatic liver segmentation based on probabilistic models and anatomical constraints |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2021-03-01 |
description |
Abstract Segmenting a liver and its peripherals from abdominal computed tomography is a crucial step toward computer aided diagnosis and therapeutic intervention. Despite the recent advances in computing methods, faithfully segmenting the liver has remained a challenging task, due to indefinite boundary, intensity inhomogeneity, and anatomical variations across subjects. In this paper, a semi-automatic segmentation method based on multivariable normal distribution of liver tissues and graph-cut sub-division is presented. Although it is not fully automated, the method minimally involves human interactions. Specifically, it consists of three main stages. Firstly, a subject specific probabilistic model was built from an interior patch, surrounding a seed point specified by the user. Secondly, an iterative assignment of pixel labels was applied to gradually update the probabilistic map of the tissues based on spatio-contextual information. Finally, the graph-cut model was optimized to extract the 3D liver from the image. During post-processing, overly segmented nodal regions due to fuzzy tissue separation were removed, maintaining its correct anatomy by using robust bottleneck detection with adjacent contour constraint. The proposed system was implemented and validated on the MICCAI SLIVER07 dataset. The experimental results were benchmarked against the state-of-the-art methods, based on major clinically relevant metrics. Both visual and numerical assessments reported herein indicated that the proposed system could improve the accuracy and reliability of asymptomatic liver segmentation. |
url |
https://doi.org/10.1038/s41598-021-85436-7 |
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