首页> 外文期刊>Journal of Biomechanics >Towards a viscoelastic model for the unfused midpalatal suture: development and validation using the midsagittal suture in New Zealand white rabbits.
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Towards a viscoelastic model for the unfused midpalatal suture: development and validation using the midsagittal suture in New Zealand white rabbits.

机译:建立未融合的mid中缝合线的粘弹性模型:在新西兰白兔中使用中矢状缝合线进行开发和验证。

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摘要

Maxillary expansion treatment is a commonly used procedure by orthodontists to widen a patient's upper jaw. As this is typically performed in adolescent patients, the midpalatal suture, connective tissue adjoining the two maxilla halves, remains unfused. Studies that have investigated patient response to expansion treatment, generally through finite element analysis, have considered this suture to behave in a linear elastic manner or it was left vacant. The purpose of the study presented here was to develop a model that could represent the midpalatal suture's viscoelastic behavior. Quasilinear viscoelastic, modified superposition, Schapery's, and Burgers modeling approaches were all considered. Raw data from a previously published study using New Zealand White Rabbits was utilized for model parameter estimation and validation. In this study, Sentalloy(?) coil springs at load levels of 0.49N (50g), 0.98N (100g), and 1.96N (200g) were used to widen the midsagittal suture of live rabbits over a period of 6 weeks. Evaluation was based on a models ability to represent experimental data well over all three load sets. Ideally, a single set of model constants could be used to represent data over all loads tested. Upon completion of the analysis it was found that the modified superposition method was able to replicate experimental data within one standard deviation of the means using a single set of constants for all loads. Future work should focus on model improvement as well as prediction of treatment outcomes.
机译:上颌骨扩张治疗是正畸医生通常用来扩大患者上颚的方法。由于这通常是在青春期患者中进行的,pal骨中部缝合线(毗邻两个上颌半部的结缔组织)仍未融合。通常通过有限元分析来研究患者对扩张治疗的反应的研究认为该缝合线表现为线性弹性或留空。这里提出的研究的目的是建立一个可以代表pal中缝线粘弹性行为的模型。拟线性粘弹性,修改叠加,Schapery和Burgers建模方法都已考虑在内。来自先前发表的使用新西兰白兔的研究的原始数据被用于模型参数估计和验证。在这项研究中,使用载荷分别为0.49N(50g),0.98N(100g)和1.96N(200g)的Sentalloy(?)螺旋弹簧在6周的时间内加宽活兔的矢状缝线。评估是基于模型能力,该模型能够很好地表示所有三个负荷组的实验数据。理想情况下,可以使用一组模型常数来表示所有测试负载下的数据。分析完成后,发现修改后的叠加方法能够对所有载荷使用一组常数,在均值的一个标准偏差内复制实验数据。未来的工作应侧重于模型改进以及治疗结果的预测。

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