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正畸弓丝应用过程中咬合力传递的动态分析:ISW与不锈钢丝的差异

Dynamic analysis for clarifying occlusal force transmission during orthodontic archwire application: difference between ISW and stainless steel wire.

作者信息

Iramaneerat K, Hisano M, Soma K

机构信息

Orthodontic Science, Department of Orofacial Development and Function, Division of Oral Health Science, Graduate School, Tokyo Medical and Dental University, Japan.

出版信息

J Med Dent Sci. 2004 Mar;51(1):59-65.

Abstract

The purpose of our study was to utilize the dynamic finite element analysis to clarify the difference between Improved Super-elastic Ti-Ni alloy Wire (ISW) and Stainless Steel Wire (SSW) on occlusal force transmission during orthodontic treatment. ABAQUS/Standard was used to analyze three finite models over a 30-ms period: ISW, SSW, and wireless models; which consisting of premolar, molar, periodontal ligament (PDL), and alveolar bone. Wire model was established by beam element. A Joint C, which exhibits viscoelasticity to buffer occlusal force, was applied between the wire and bracket. The load was applied on the occlusal surface. At load withdrawal point, the average amounts of von Mises stress on PDL in three models were of the same value. However as time progressed, the stress in wireless model became higher than ISW and SSW models. In contrast, as time progressed further, the stress in SSW model became higher than the other two models and maintained its higher level until the end of analysis. Results showed that high damping capacity of ISW had an ability to buffer the transmission of occlusal force to the PDL. Besides, the dynamic analysis demonstrated an advantage to investigate the stress alterative response between models versus time period.

摘要

我们研究的目的是利用动态有限元分析来阐明正畸治疗过程中改良型超弹性钛镍合金丝(ISW)和不锈钢丝(SSW)在咬合力传递方面的差异。使用ABAQUS/Standard在30毫秒的时间段内分析三个有限元模型:ISW、SSW和无丝模型;这些模型由前磨牙、磨牙、牙周韧带(PDL)和牙槽骨组成。丝模型通过梁单元建立。在丝和托槽之间施加具有粘弹性以缓冲咬合力的关节C。载荷施加在咬合面上。在载荷撤去点,三个模型中PDL上的冯·米塞斯应力平均值相同。然而,随着时间的推移,无丝模型中的应力高于ISW和SSW模型。相反,随着时间的进一步推移,SSW模型中的应力高于其他两个模型,并在分析结束前一直保持较高水平。结果表明,ISW的高阻尼能力具有缓冲咬合力向PDL传递的能力。此外,动态分析显示了在研究模型之间应力随时间变化响应方面的优势。

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