Department of Cariology, Endodontics and Oral Pathology, School of Dental Medicine, University of Medicine and Pharmacy Iuliu Hatieganu, Str. Motilor 33, 400001 Cluj-Napoca, Romania.
Department of Orthodontics, School of Dental Medicine, University of Medicine and Pharmacy Iuliu Hatieganu, Str. Avram Iancu 31, 400083 Cluj-Napoca, Romania.
Int J Environ Res Public Health. 2023 Feb 25;20(5):4133. doi: 10.3390/ijerph20054133.
Herein Finite elements analysis (FEA) study assesses the adequacy and accuracy of five failure criteria (Von Mises (VM), Tresca, maximum principal (S1), minimum principal (S3), and Hydrostatic pressure) for the study of tooth as a structure (made of enamel, dentin, and cement), along with its stress absorption-dissipation ability. Eighty-one 3D models of the second lower premolar (with intact and 1-8 mm reduced periodontium) were subjected to five orthodontic forces (intrusion, extrusion, tipping, rotation, and translation) of 0.5 N (approx. 50 gf) (in a total of 405 FEA simulations). Only the Tresca and VM criteria showed biomechanically correct stress display during the 0-8 mm periodontal breakdown simulation, while the other three showed various unusual biomechanical stress display. All five failure criteria displayed comparable quantitative stress results (with Tresca and VM producing the highest of all), showing the rotational and translational movements to produce the highest amount of stress, while intrusion and extrusion, the lowest. The tooth structure absorbed and dissipated most of the stress produced by the orthodontic loads (from a total of 0.5 N/50 gf only 0.125 N/12.5 gf reached PDL and 0.01 N/1 gf the pulp and NVB). The Tresca criterion seems to be more accurate than Von Mises for the study of tooth as structure.
本文通过有限元分析(FEA)研究评估了五种失效准则(Von Mises(VM)、Tresca、最大主应力(S1)、最小主应力(S3)和静水压力)在研究牙齿结构(由牙釉质、牙本质和牙骨质组成)及其应力吸收能力方面的充分性和准确性。对 81 个第二下前磨牙的 3D 模型(完整和牙周组织减少 1-8mm)进行了 5 种正畸力(内收、外展、倾斜、旋转和平移)为 0.5N(约 50gf)的测试(总共进行了 405 个 FEA 模拟)。只有 Tresca 和 VM 准则在 0-8mm 牙周破坏模拟期间显示出生物力学上正确的应力显示,而其他三个准则显示出各种异常的生物力学应力显示。所有五种失效准则都显示出可比的定量应力结果(其中 Tresca 和 VM 产生的最高),表明旋转和平移运动产生的应力最高,而内收和外展产生的应力最低。牙齿结构吸收和耗散了正畸力产生的大部分应力(总共有 0.5N/50gf,只有 0.125N/12.5gf 到达牙周膜,0.01N/1gf 到达牙髓和 NVB)。对于牙齿结构的研究,Tresca 准则似乎比 Von Mises 准则更准确。