Department of Orthodontics, Faculty of Dental Sciences, M.S. Ramaiah University of Applied Sciences, Bangalore, India.
Comput Methods Biomech Biomed Engin. 2021 Dec;24(16):1841-1853. doi: 10.1080/10255842.2021.1925255. Epub 2021 May 13.
It is well known that the initiating factor for the biologic changes is the stress induced in the periodontal tissue; but as of now there is no gauge to measure the stress in the PDL directly. Therefore finite element model can be used to study the stress-strain relation through simulation of the PDL. The aim of the study was to simulate the stress response in the periodontium for different moment to farce ratios induced by tipping, translation, rotation, intrusion, extrusion and root torque by means of finite element method. The three-dimensional finite element model of the mandibular first molar was constructed. The pattern of Von misses stress and the maximum displacement of the mandibular molar was recorded on application of different combination of moment to force ratio. The periodontium was sensitive to changes in the load values. The stress pattern in the periodontal ligament for a lingually directed force without counterbalancing moments showed high concentration at the cervical level of the root. With addition of counter-tipping and counter-rotation moments, a relatively even distribution of stress throughout PDL was obtained. Additionally, high stress concentration was observed on the root surface at the furcation level for forces applied parallel to the long axis. Translation type of tooth movement showed relatively even distribution of the stress in the PDL and makes the tooth less susceptible to root resorption.
众所周知,生物变化的启动因素是牙周组织中的应激;但截至目前,尚无直接测量 PD L 中应力的方法。因此,可以使用有限元模型通过模拟 PD L 来研究应力-应变关系。本研究的目的是通过有限元法模拟不同倾斜、平移、旋转、内陷、外展和根扭矩的力矩与力比值引起的牙周组织的应力反应。构建下颌第一磨牙的三维有限元模型。记录在应用不同的力矩与力比值组合时下颌磨牙的 Von misses 应力模式和最大位移。牙周组织对负载值的变化很敏感。对于没有平衡力矩的舌向力,牙周韧带中的应力模式在根的颈段表现出高浓度。随着抗倾斜和抗旋转力矩的加入,PD L 中的应力得到了相对均匀的分布。此外,对于沿长轴施加的力,在分叉水平的牙根表面观察到高的应力集中。牙齿平移类型的运动在 PD L 中表现出相对均匀的应力分布,使牙齿不易发生根吸收。