Journal of Peking University(Health Sciences) ›› 2017, Vol. 49 ›› Issue (4): 719-723. doi: 10.3969/j.issn.1671-167X.2017.04.031

• Article • Previous Articles     Next Articles

Three-dimensional data fusion method for tooth crown and root based on curvature continuity algorithm#br#

ZHAO Yi-jiao, LIU Yi, SUN Yu-chun, WANG Yong△   

  1. (Center of Digital Dentistry, Department of Prosthodontics, Peking University School and Hospital of Stomatology & National Engineering Laboratory for Digital and Material Technology of Stomatology & Research Center of Engineering and Technology for Digital Dentistry of Ministry of Health & Beijing Key Laboratory of Digital Stomatology, Beijing 100081, China)
  • Online:2017-08-18 Published:2017-08-18
  • Contact: WANG Yong E-mail:kqcadc@bjmu.edu.cn
  • Supported by:
    Supported by the National High Technology Research and Development Program (“863” Program) of China (2013AA040801) and the National Natural Science Foundation of China (81300921)

Abstract: Objective:To explore a three-dimensional (3D) data fusion and integration method of optical scanning tooth crowns and cone beam CT (CBCT) reconstructing tooth roots for their natural transition in the 3D profile. Methods: One mild dental crowding case was chosen from orthodontics clinics with full denture. The CBCT data were acquired to reconstruct the dental model with tooth roots by Mimics 17.0 medical imaging software, and the optical impression was taken to obtain the dentition model with high precision physiological contour of crowns by Smart Optics dental scanner. The two models were doing 3D registration based on their common part of the crowns’ shape in Geomagic Studio 2012 reverse engineering software. The model coordinate system was established by defining the occlusal plane. crown-gingiva boundary was extracted from optical scanning model manually, then crown-root boundary was generated by offsetting and projecting crown-gingiva boundary to the root model. After trimming the crown and root models, the 3D fusion model with physiological contour crown and nature root was formed by curvature continuity filling algorithm finally. In the study, 10 patients with dentition mild crowded from the oral clinics were followed up with this method to obtain 3D crown and root fusion models, and 10 high qualification doctors were invited to do subjective evaluation of these fusion models. Results: This study based on commercial software platform, preliminarily realized the 3D data fusion and integration method of optical scanning tooth crowns and CBCT tooth roots with a curvature continuous shape transition. The 10 patients’ 3D crown and root fusion models were constructed successfully by the method, and the average score of the doctors’ subjective evaluation for these 10 models was 8.6 points (0-10 points). which meant that all the fusion models could basically meet the need of the oral clinics, and also showed the method in our study was feasible and efficient in orthodontics study and clinics. Conclusion: The method of this study for 3D crown and root data fusion could obtain an integrate tooth or dental model more close to the nature shape. CBCT model calibration may probably improve the precision of the fusion model. The adaptation of this method for severe dentition crowding and micromaxillary deformity needs further research.

Key words: Tooth crown, Tooth root, Three-dimensional image fusion, Cone beam CT, Dental model

CLC Number: 

  •  
[1] Yun-fei DAI,He LIU,Chu-fang PENG,Xi-jun JIANG. Retrospective evaluation of treatment outcomes in immature teeth treated with regenerative endodontic procedures with an over-36-month review [J]. Journal of Peking University (Health Sciences), 2023, 55(4): 729-735.
[2] Juan GAO,Hang-miao LV,Hui-min MA,Yi-jiao ZHAO,Xiao-tong LI. Evaluation of root resorption after surgical orthodontic treatment of skeletal Class Ⅲ malocclusion by three-dimensional volumetric measurement with cone-beam CT [J]. Journal of Peking University (Health Sciences), 2022, 54(4): 719-726.
[3] FENG Sha-wei,GUO Hui,WANG Yong,ZHAO Yi-jiao,LIU He. Initial establishment of digital reference standardized crown models of the primary teeth [J]. Journal of Peking University (Health Sciences), 2022, 54(2): 327-334.
[4] LIU Si-min,ZHAO Yi-jiao,WANG Xiao-yan,WANG Zu-hua. In vitro evaluation of positioning accuracy of trephine bur at different depths by dynamic navigation [J]. Journal of Peking University (Health Sciences), 2022, 54(1): 146-152.
[5] Wei-liang WU,Xiao ZENG,Xiao-qiang LIU,Jian-guo TAN. Esthetic proportions of maxillary anterior teeth of 120 Chinese adults [J]. Journal of Peking University (Health Sciences), 2020, 52(6): 1130-1134.
[6] Xiao-xian CHEN,Jie ZHONG,Wen-juan YAN,Hong-mei ZHANG,Xia JIANG,Qian HUANG,Shi-hua XUE,Xing-gang LIU. Clinical performance of rensin-bonded composite strip crowns in primary incisors [J]. Journal of Peking University (Health Sciences), 2020, 52(5): 907-912.
[7] Ning XIAO,Yu-chun SUN,Yi-jiao ZHAO,Yong WANG. Preliminary study on three digital analysis methods for analyzing the distribution and area of occlusal contacts [J]. Journal of Peking University(Health Sciences), 2020, 52(1): 144-151.
[8] Ning XIAO,Yu-chun SUN,Yi-jiao ZHAO,Yong WANG. A method to evaluate the trueness of reconstructed dental models made with photo-curing 3D printing technologies [J]. Journal of Peking University(Health Sciences), 2019, 51(1): 120-130.
[9] DAI Fan-fan, LIU Yi, XU Tian-min, CHEN Gui. Exploring a new method for superimposition of pre-treatment and post-treatment mandibular digital dental casts in adults [J]. Journal of Peking University(Health Sciences), 2018, 50(2): 271-278.
[10] ZHAO Yi-jiao, WANG Si-wei, LIU Yi, WANG Yong. A method for rapid extracting three-dimensional root model of vivo tooth from cone beam computed tomography data based on the anatomical characteristics of periodontal ligament [J]. Journal of Peking University(Health Sciences), 2017, 49(1): 54-059.
[11] YANG Xuan,LE Di,ZHANG Yan-ling,LIANG ling-zhi,YANG Gang,HU Wen-jie. Relationship between crown form of upper central incisors and papilla filling in Chinese Han-nationality youth [J]. Journal of Peking University(Health Sciences), 2016, 48(5): 866-870.
[12] WEN Fu-jia,CHEN Gui,LIU Yi. Morphological analysis of roots and alveolar bone changes after upper anterior #br# retraction with maximum anchorage based on cone-beam computed tomography [J]. Journal of Peking University(Health Sciences), 2016, 48(4): 702-708.
[13] YE Hong-qiang, LIU Yu-shu, LIU Yun-song, NING Jing, ZHAO Yi-jiao, ZHOU Yong-sheng. Constructing 3-dimensional colorized digital dental model assisted by digital photography [J]. Journal of Peking University(Health Sciences), 2016, 48(1): 138-142.
[14] ZHEN Min, HU Wen-jie, RONG Qi-guo. Finite element analysis of the maxillary central incisor with crown lengthening surgery and post-core restoration in management of crown-root fracture [J]. Journal of Peking University(Health Sciences), 2015, 47(6): 1015-1021.
[15] QIN Yi-Fei, XU Tian-Min. Reproducibility and repeatability of the determination of occlusal plane on digital dental models [J]. Journal of Peking University(Health Sciences), 2015, 47(3): 536-540.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!