Biomechanical performance of an immature maxillary central incisor after revitalization: a finite element analysis

被引:37
作者
Bucchi, C. [1 ,2 ]
Marce-Nogue, J. [3 ,4 ]
Galler, K. M. [5 ]
Widbiller, M. [5 ]
机构
[1] Univ Barcelona, Dept Pathol & Expt Therapy, Barcelona, Spain
[2] Univ La Frontera, Dept Integral Adult Dent, Res Ctr Dent Sci, Temuco, Chile
[3] Univ Hamburg, Ctr Nat Hist, Hamburg, Germany
[4] Univ Autonoma Barcelona, Inst Catala Paleontol Miguel Crusafont, Barcelona, Spain
[5] Univ Hosp Regensburg, Dept Conservat Dent & Periodontol, Regensburg, Germany
关键词
dental cementum; dentine; finite element analysis; mechanical stress; regenerative endodontics; STEM-CELLS; PERMANENT TEETH; REGENERATIVE ENDODONTICS; APICAL PERIODONTITIS; PHYSICAL-PROPERTIES; ROOT CEMENTUM; REVASCULARIZATION; APEXIFICATION; FRACTURES; SURVIVAL;
D O I
10.1111/iej.13159
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
Aim To investigate the stress distribution in an immature maxillary incisor and the same tooth after simulated revitalization with deposition of tubular dentine or cementum by finite element analysis (FEA). Methodology A finite element model of a maxillary central incisor was developed on the basis of a mu CT scan. The tooth was segmented in two parts: a part that represented a tooth in an immature state and an apical part that represented the tissue formed after revitalization. The apical part was given the mechanical properties of dentine or cementum. The immature tooth and the same tooth reinforced by either dentine or cementum underwent simulation of biting, trauma and orthodontic movement. Von Mises stress values were compared between the scenarios and tooth segments. Results Maximum stress in the immature incisor developed apically; however, dentine- and cementum-reinforced teeth revealed the greatest stress in the external portion of the root decreasing towards the apex. Greatest mechanical stress was caused by dental trauma perpendicular to the long axis of the root followed by biting and orthodontic movement. Stress peaks were lower in the dentine-reinforced tooth compared with the cementum-reinforced tooth in all scenarios; however, median stress in the immature part was reduced irrespective of dentine or cementum deposition. Dentine reinforcement caused greater stress values in the apical segment due to absorbance of the applied force, whereas stress was not transferred towards deposited cementum. Conclusions Apposition of simulated hard tissue in a maxillary central incisor after revitalization reduced mechanical stress in the immature tooth. Formation of dentine was advantageous because, unlike cementum, it facilitated an even stress distribution throughout the root resulting in lower stress values.
引用
收藏
页码:1508 / 1518
页数:11
相关论文
共 50 条
  • [31] Effect of Anterior Implant Position on Biomechanical Performance in the Maxillary All-on-Four Treatment: A 3-D Finite Element Analysis
    Sezer, Taygun
    Kilic, Kerem
    Esim, Emir
    JOURNAL OF ORAL IMPLANTOLOGY, 2022, 48 (03) : 177 - 186
  • [32] Effect of Implant Diameter and Bruxism on Biomechanical Performance in Maxillary All-on-4 Treatment: A 3D Finite Element Analysis
    Sezer, Taygun
    Kilic, Kerem
    Esim, Emir
    INTERNATIONAL JOURNAL OF ORAL & MAXILLOFACIAL IMPLANTS, 2022, 37 (04) : 709 - 721
  • [33] A biomechanical case study on the optimal orthodontic force on the maxillary canine tooth based on finite element analysis
    Wu, Jian-lei
    Liu, Yun-feng
    Peng, Wei
    Dong, Hui-yue
    Zhang, Jian-xing
    JOURNAL OF ZHEJIANG UNIVERSITY-SCIENCE B, 2018, 19 (07): : 535 - 546
  • [34] Effect of length of apical root resection on the biomechanical response of a maxillary central incisor in various occlusal relationships
    Ran, S. J.
    Yang, X.
    Sun, Z.
    Zhang, Y.
    Chen, J. X.
    Wang, D. M.
    Liu, B.
    INTERNATIONAL ENDODONTIC JOURNAL, 2020, 53 (01) : 111 - 121
  • [35] Replantation of an immature mandibular primary central incisor after avulsion: A case report
    Isogawa, Nobutaka
    Baba, Yoshiyuki
    PEDIATRIC DENTAL JOURNAL, 2021, 31 (03) : 275 - 280
  • [36] Autotransplanation of immature premolars to replace a severely traumatized maxillary central incisor in young patients: Orthodontic and surgical cooperation
    Czochrowska, Ewa
    Plakwicz, Pawel
    SEMINARS IN ORTHODONTICS, 2023, 29 (02) : 153 - 163
  • [37] Stress distribution in the mandibular central incisor and periodontal ligament while opening the bite: A finite element analysis
    Yan, Weijun
    Jiao, Xiaohui
    Shao, Ping
    Cai, Wei
    BIOMEDICAL RESEARCH-INDIA, 2012, 23 (03): : 343 - 348
  • [38] Biomechanical Analysis of Tibiofibular Syndesmosis Injury Fixation Methods: A Finite Element Analysis
    Mercan, Numan
    Yildirim, Ahmet
    Dere, Yunus
    JOURNAL OF FOOT & ANKLE SURGERY, 2023, 62 (01) : 107 - 114
  • [39] Biomechanical Analysis of Orbital Development: A Finite Element Analysis by an Experimentally Validated Model
    Wang, Mingyang
    Jiang, Xue
    Song, Dongyu
    Li, Dongmei
    JOURNAL OF CRANIOFACIAL SURGERY, 2024, 35 (05) : 1576 - 1580
  • [40] Effect of Different Treatment Options on Biomechanics of Immature Teeth: A Finite Element Stress Analysis Study
    Belli, Serra
    Eraslan, Oguz
    Eskitascioglu, Gurcan
    JOURNAL OF ENDODONTICS, 2018, 44 (03) : 475 - 479