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Application of a new viscoelastic finite element method model and analysis of miniscrew-supported hybrid hyrax treatment

机译:新型粘弹性有限元方法模型的应用及微螺杆支撑的混合非洲蹄兔治疗分析

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Introduction: In this study, we aimed to assess the ability of a new viscoelastic finite element method model to accurately simulate rapid palatal expansion with a miniscrew-supported hybrid hyrax appliance. Methods: A female patient received 3-dimensional craniofacial imaging with computed tomography at 2 times: before expansion and immediately after expansion, with the latter serving as a reference model for the analysis. A novel approach was applied to the finite element method model to improve simulation of the viscoelastic properties of osseous tissue. Results: The resulting finite element method model was a suitable approximation of the clinical situation and adequately simulated the forced expansion of the midpalatal suture. Specifically, it demonstrated that the hybrid hyrax appliance delivered a force via the 2 mini-implants at the center of resistance of the nasomaxillary complex. Conclusions: The newly developed model provided a suitable simulation of the clinical effects of the hybrid hyrax appliance, which proved to be a suitable device for rapid palatal expansion.
机译:简介:在本研究中,我们旨在评估一种新的粘弹性有限元方法模型使用微型螺钉支持的混合Hyrax装置精确模拟快速pa裂的能力。方法:一名女性患者在扩张前和扩张后两次进行了CT断层扫描的3维三维颅面成像,后者作为分析的参考模型。一种新颖的方法被应用于有限元方法模型,以改善对骨组织的粘弹性的模拟。结果:所得的有限元方法模型非常适合临床情况,并充分模拟了pal中缝线的强制扩张。具体来说,它证明了混合式非洲蹄兔矫治器通过位于鼻颌复合体抵抗中心的2个微型植入物施加了力。结论:新开发的模型提供了混合式Hyrax矫治器临床效果的合适模拟,事实证明这是用于快速pa扩张的合适装置。

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