Watertight 2-manifold 3D bone surface model reconstruction from CT images based on visual hyper-spherical mapping

This paper proposes a general algorithm to reconstruct watertight 2-manifold 3D bone surface model from CT images based on visual hyper-spherical mapping. The reconstruction algorithm includes three main steps: two-step thresholding, initial watertight surface reconstruction and shape optimization....

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Main Authors: Tianran Yuan, Hongsheng Zhang, Hao Liu, Juan Du, Huiming Yu, Yimin Wang, Yabin Xu
Format: Article
Language:English
Published: AIMS Press 2021-04-01
Series:Mathematical Biosciences and Engineering
Subjects:
Online Access:http://www.aimspress.com/article/doi/10.3934/mbe.2021068?viewType=HTML
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spelling doaj-06059c011e12447f86ce860fbc40ac1a2021-04-12T01:11:27ZengAIMS PressMathematical Biosciences and Engineering1551-00182021-04-011821280131310.3934/mbe.2021068Watertight 2-manifold 3D bone surface model reconstruction from CT images based on visual hyper-spherical mappingTianran Yuan0Hongsheng Zhang 1Hao Liu 2Juan Du 3Huiming Yu4Yimin Wang5Yabin Xu61. School of Mechanical and Material Engineering, Huaiyin Institute of Technology, Huaian, Jiangsu 223003, China1. School of Mechanical and Material Engineering, Huaiyin Institute of Technology, Huaian, Jiangsu 223003, China2. College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, Jiangsu 210016, China3. School of Medical Technology, Jiangsu College of Nursing, Huaian, Jiangsu 223005, China4. Department of Oral and Maxillofacial Surgery, Huaian First People's Hospital, Huaian, Jiangsu 223300, China1. School of Mechanical and Material Engineering, Huaiyin Institute of Technology, Huaian, Jiangsu 223003, China2. College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, Jiangsu 210016, ChinaThis paper proposes a general algorithm to reconstruct watertight 2-manifold 3D bone surface model from CT images based on visual hyper-spherical mapping. The reconstruction algorithm includes three main steps: two-step thresholding, initial watertight surface reconstruction and shape optimization. Firstly, volume sampling points of the target bone with given narrower threshold range are extracted by thresholding with combination of 3D morphology operation. Secondly, visible points near the bone's outer surface are extracted from its corresponding volume sampling points by hyper-spherical projection mapping method. Thirdly, implicit surface reconstruction algorithm is employed on the extracted visible surface points to obtain an initial watertight 3D bone surface model which is used as the deformation model in the following accurate bone surface model generation stage. Finally, the initial surface model is deformed according to the segmentation data with wider threshold range under given constraints in order to achieve an accurate watertight 3D bone surface model. Experiment and comparison results show that the proposed algorithm can reconstruct watertight 3D bone surface model from CT images, and local details of the bone surface can be restored accurately for the cases used in this paper.http://www.aimspress.com/article/doi/10.3934/mbe.2021068?viewType=HTMLbone surface reconstructionct image resampling and segmentationsurface deformationvisible points extraction
collection DOAJ
language English
format Article
sources DOAJ
author Tianran Yuan
Hongsheng Zhang
Hao Liu
Juan Du
Huiming Yu
Yimin Wang
Yabin Xu
spellingShingle Tianran Yuan
Hongsheng Zhang
Hao Liu
Juan Du
Huiming Yu
Yimin Wang
Yabin Xu
Watertight 2-manifold 3D bone surface model reconstruction from CT images based on visual hyper-spherical mapping
Mathematical Biosciences and Engineering
bone surface reconstruction
ct image resampling and segmentation
surface deformation
visible points extraction
author_facet Tianran Yuan
Hongsheng Zhang
Hao Liu
Juan Du
Huiming Yu
Yimin Wang
Yabin Xu
author_sort Tianran Yuan
title Watertight 2-manifold 3D bone surface model reconstruction from CT images based on visual hyper-spherical mapping
title_short Watertight 2-manifold 3D bone surface model reconstruction from CT images based on visual hyper-spherical mapping
title_full Watertight 2-manifold 3D bone surface model reconstruction from CT images based on visual hyper-spherical mapping
title_fullStr Watertight 2-manifold 3D bone surface model reconstruction from CT images based on visual hyper-spherical mapping
title_full_unstemmed Watertight 2-manifold 3D bone surface model reconstruction from CT images based on visual hyper-spherical mapping
title_sort watertight 2-manifold 3d bone surface model reconstruction from ct images based on visual hyper-spherical mapping
publisher AIMS Press
series Mathematical Biosciences and Engineering
issn 1551-0018
publishDate 2021-04-01
description This paper proposes a general algorithm to reconstruct watertight 2-manifold 3D bone surface model from CT images based on visual hyper-spherical mapping. The reconstruction algorithm includes three main steps: two-step thresholding, initial watertight surface reconstruction and shape optimization. Firstly, volume sampling points of the target bone with given narrower threshold range are extracted by thresholding with combination of 3D morphology operation. Secondly, visible points near the bone's outer surface are extracted from its corresponding volume sampling points by hyper-spherical projection mapping method. Thirdly, implicit surface reconstruction algorithm is employed on the extracted visible surface points to obtain an initial watertight 3D bone surface model which is used as the deformation model in the following accurate bone surface model generation stage. Finally, the initial surface model is deformed according to the segmentation data with wider threshold range under given constraints in order to achieve an accurate watertight 3D bone surface model. Experiment and comparison results show that the proposed algorithm can reconstruct watertight 3D bone surface model from CT images, and local details of the bone surface can be restored accurately for the cases used in this paper.
topic bone surface reconstruction
ct image resampling and segmentation
surface deformation
visible points extraction
url http://www.aimspress.com/article/doi/10.3934/mbe.2021068?viewType=HTML
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AT haoliu watertight2manifold3dbonesurfacemodelreconstructionfromctimagesbasedonvisualhypersphericalmapping
AT juandu watertight2manifold3dbonesurfacemodelreconstructionfromctimagesbasedonvisualhypersphericalmapping
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AT yiminwang watertight2manifold3dbonesurfacemodelreconstructionfromctimagesbasedonvisualhypersphericalmapping
AT yabinxu watertight2manifold3dbonesurfacemodelreconstructionfromctimagesbasedonvisualhypersphericalmapping
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