牙周韧带等效力学参数的有限元建模估计。
Estimation of periodontal ligament's equivalent mechanical parameters for finite element modeling.
机构信息
Department of Mechanical Engineering, Indiana University Purdue University, Indianapolis, IN, USA.
出版信息
Am J Orthod Dentofacial Orthop. 2013 Apr;143(4):486-91. doi: 10.1016/j.ajodo.2012.10.025.
INTRODUCTION
Young's modulus (E) and Poisson's ratio (v) of the periodontal ligament are needed in a finite element analysis for investigating the biomechanical behavior of a tooth, periodontal ligament, and bone complex. However, large discrepancies in E (0.01-1,750 MPa) and v (0.28-0.49) were reported previously. The objective of this study was to narrow the ranges and to provide equivalent E and v pairs suitable for finite element modeling of a tooth, periodontal ligament, and bone complex by using a reported crown load-displacement relationship as the criterion.
METHODS
A 3-dimensional finite element model of a 3-tooth, periodontal ligament, and bone complex, consisting of a maxillary central incisor with 2 adjacent teeth, from a cone-beam computed tomography scan was created. The dimensions, constraints, and loading condition were kept similar to those reported in the human study. With the load applied to the crown, both v and E were adjusted independently, and the corresponding crown displacements were calculated. The resulting load-displacement curves were compared with those reported in the human study. The mean absolute displacement difference method was used to find the best fit. The E and v pairs that generated the minimum mean absolute displacement difference were identified.
RESULTS
The finite element model with 1 of the 3 E and v pairs (v = 0.35, E = 0.87 MPa; v = 0.4, E = 0.71 MPa; and v = 0.45, E = 0.47 MPa) simulated the tooth, periodontal ligament, and bone complex well. The mean absolute displacement differences were 0.0135, 0.0138, and 0.0138 mm, respectively; these are less than 8% of 0.175 mm, which was the crown displacement of the tooth, periodontal ligament, and bone complex under the load of 500 cN.
CONCLUSIONS
The E and v values close to the 3 pairs might be used for finite element modeling of the tooth, periodontal ligament, and bone complex.
简介
杨氏模量(E)和泊松比(v)是牙周韧带有限元分析中研究牙齿、牙周韧带和骨复合体生物力学行为所必需的。然而,以前报道的 E(0.01-1,750 MPa)和 v(0.28-0.49)值差异很大。本研究的目的是通过使用报道的牙冠载荷-位移关系作为标准,缩小范围并提供适用于牙齿、牙周韧带和骨复合体有限元建模的等效 E 和 v 值对。
方法
使用从锥形束 CT 扫描获得的上颌中切牙及其相邻 2 颗牙齿的 3 颗牙齿、牙周韧带和骨复合体的 3 维有限元模型。尺寸、约束和加载条件与人体研究中报道的相似。在牙冠上施加载荷后,独立调整 v 和 E,并计算相应的牙冠位移。将得到的载荷-位移曲线与人体研究中报道的曲线进行比较。使用平均绝对位移差法找到最佳拟合。确定产生最小平均绝对位移差的 E 和 v 值对。
结果
使用 3 对 E 和 v 值中的 1 对(v=0.35,E=0.87 MPa;v=0.4,E=0.71 MPa;和 v=0.45,E=0.47 MPa)的有限元模型很好地模拟了牙齿、牙周韧带和骨复合体。平均绝对位移差分别为 0.0135、0.0138 和 0.0138mm,均小于 0.175mm 的 8%,这是牙、牙周韧带和骨复合体在 500cN 载荷下的牙冠位移。
结论
接近这 3 对 E 和 v 值的 E 和 v 值可能用于牙齿、牙周韧带和骨复合体的有限元建模。