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正畸治疗初始阶段牙周膜应力松弛行为的建模

Modeling stress-relaxation behavior of the periodontal ligament during the initial phase of orthodontic treatment.

作者信息

Romanyk Dan L, Melenka Garrett W, Carey Jason P

机构信息

Department of Mechanical Engineering, University of Alberta, 4-9 Mechanical Engineering Building, Edmonton, AB T6G 2G8, Canada.

出版信息

J Biomech Eng. 2013 Sep;135(9):91007. doi: 10.1115/1.4024631.

Abstract

The periodontal ligament is the tissue that provides early tooth motion as a result of applied forces during orthodontic treatment: a force-displacement behavior characterized by an instantaneous displacement followed by a creep phase and a stress relaxation phase. Stress relaxation behavior is that which provides the long-term loading to and causes remodelling of the alveolar bone, which is responsible for the long-term permanent displacement of the tooth. In this study, the objective was to assess six viscoelastic models to predict stress relaxation behavior of rabbit periodontal ligament (PDL). Using rabbit stress relaxation data found in the literature, it was found that the modified superposition theory (MST) model best predicts the rabbit PDL behavior as compared to nonstrain-dependent and strain-dependent versions of the Burgers four-parameter and the five-parameter viscoelastic models, as well as predictions by Schapery's viscoelastic model. Furthermore, it is established that using a quadratic form for MST strain dependency provides more stable solutions than the cubic form seen in previous studies.

摘要

牙周韧带是在正畸治疗期间由于施加力而提供早期牙齿移动的组织

一种力-位移行为,其特征是瞬时位移,随后是蠕变阶段和应力松弛阶段。应力松弛行为是为牙槽骨提供长期负荷并导致其重塑的行为,牙槽骨负责牙齿的长期永久位移。在本研究中,目的是评估六种粘弹性模型以预测兔牙周韧带(PDL)的应力松弛行为。利用文献中发现的兔应力松弛数据,发现与Burgers四参数和五参数粘弹性模型的非应变依赖性和应变依赖性版本以及Schapery粘弹性模型的预测相比,修正叠加理论(MST)模型最能预测兔PDL行为。此外,已确定使用二次形式的MST应变依赖性比先前研究中看到的三次形式提供更稳定的解。

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