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人牙周膜生物力学特性的体内测量与数值分析

In vivo measurements and numerical analysis of the biomechanical characteristics of the human periodontal ligament.

作者信息

Keilig L, Drolshagen M, Tran K L, Hasan I, Reimann S, Deschner J, Brinkmann K T, Krause R, Favino M, Bourauel C

机构信息

Endowed Chair of Oral Technology, Rheinische Friedrich-Wilhelms-University, Welschnonnenstr. 17, 53111 Bonn, Germany; Department of Prosthetic Dentistry, Preclinical Education and Materials Science, Rheinische Friedrich-Wilhelms-University, Welschnonnenstr. 17, 53111 Bonn, Germany.

Endowed Chair of Oral Technology, Rheinische Friedrich-Wilhelms-University, Welschnonnenstr. 17, 53111 Bonn, Germany.

出版信息

Ann Anat. 2016 Jul;206:80-8. doi: 10.1016/j.aanat.2015.08.004. Epub 2015 Sep 12.

Abstract

The periodontal ligament is a complex tissue with respect to its biomechanical behaviour. It is important to understand the mechanical behaviour of the periodontal ligament during physiological loading in healthy patients as well as during the movement of the tooth in orthodontic treatment or in patients with periodontal disease, as these might affect the mechanical properties of the periodontal ligament (PDL). Up to now, only a limited amount of in vivo data is available concerning this issue. The aim of this study has been to determine the time dependent material properties of the PDL in an experimental in vivo study, using a novel device that is able to measure tooth displacement intraorally. Using the intraoral loading device, tooth deflections at various velocities were realised in vivo on human teeth. The in vivo investigations were performed on the upper left central incisors of five volunteers aged 21-33 years with healthy periodontal tissue. A deflection, applied at the centre of the crown, was linearly increased from 0 to 0.15mm in a loading period of between 0.1 and 5.0s. Individual numerical models were developed based on the experimental results to simulate the relationship between the applied force and tooth displacement. The numerical force/displacement curves were fitted to the experimental ones to obtain the material properties of the human PDL. For the shortest loading time of 0.1s, the experimentally determined forces were between 7.0 and 16.2N. The numerically calculated Young's modulus varied between 0.9MPa (5.0s) and 1.2MPa (0.1s). By considering the experimentally and numerically obtained force curves, forces decreased with increasing loading time. The experimental data gained in this study can be used for the further development and verification of a multiphasic constitutive law of the PDL.

摘要

牙周韧带在生物力学行为方面是一种复杂的组织。了解健康患者生理负荷期间以及正畸治疗或牙周疾病患者牙齿移动期间牙周韧带的力学行为非常重要,因为这些情况可能会影响牙周韧带(PDL)的力学性能。到目前为止,关于这个问题的体内数据有限。本研究的目的是在一项实验性体内研究中,使用一种能够在口腔内测量牙齿位移的新型装置,确定PDL随时间变化的材料特性。使用口腔内加载装置,在人体牙齿上实现了体内不同速度下的牙齿挠度。对5名年龄在21 - 33岁、牙周组织健康的志愿者的左上中切牙进行了体内研究。在0.1至5.0秒的加载期内,施加在牙冠中心的挠度从0线性增加到0.15毫米。根据实验结果建立了个体数值模型,以模拟施加力与牙齿位移之间的关系。将数值力/位移曲线与实验曲线拟合,以获得人体PDL的材料特性。对于最短加载时间0.1秒,实验测定的力在7.0至16.2牛之间。数值计算得到的杨氏模量在0.9兆帕(5.0秒)至1.2兆帕(0.1秒)之间变化。通过考虑实验和数值获得的力曲线,力随加载时间增加而减小。本研究中获得的实验数据可用于进一步开发和验证PDL的多相本构定律。

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