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首页> 外文期刊>Journal of healthcare engineering. >Biomechanical Effects of Various Bone-Implant Interfaces on the Stability of Orthodontic Miniscrews: A Finite Element Study
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Biomechanical Effects of Various Bone-Implant Interfaces on the Stability of Orthodontic Miniscrews: A Finite Element Study

机译:各种骨-植入物界面对正畸微螺钉稳定性的生物力学影响:有限元研究

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Introduction. Osseointegration is required for prosthetic implant, but the various bone-implant interfaces of orthodontic miniscrews would be a great interest for the orthodontist. There is no clear consensus regarding the minimum amount of bone-implant osseointegration required for a stable miniscrew. The objective of this study was to investigate the influence of different bone-implant interfaces on the miniscrew and its surrounding tissue. Methods. Using finite element analysis, an advanced approach representing the bone-implant interface is adopted herein, and different degrees of bone-implant osseointegration were implemented in the FE models. A total of 26 different FE analyses were performed. The stress/strain patterns were calculated and compared, and the displacement of miniscrews was also evaluated. Results. The stress/strain distributions are changing with the various bone-implant interfaces. In the scenario of 0% osseointegration, a rather homogeneous distribution was predicted. After 15% osseointegration, the stress/strains were gradually concentrated on the cortical bone region. The miniscrew experienced the largest displacement under the no osseointegra condition. The maximum displacement decreases sharply from 0% to 3% and tends to become stable. Conclusion. From a biomechanical perspective, it can be suggested that orthodontic loading could be applied on miniscrews after about 15% osseointegration without any loss of stability.
机译:介绍。假体植入需要骨整合,但是正畸微螺钉的各种骨-植入界面将对正畸医生产生极大的兴趣。对于稳定的微螺钉所需的最小数量的骨植入物骨整合尚无明确共识。这项研究的目的是研究不同的骨-植入物界面对微螺钉及其周围组织的影响。方法。通过有限元分析,本文采用了一种代表骨-植入物界面的先进方法,并在有限元模型中实现了不同程度的骨-植入物骨整合。总共进行了26种不同的FE分析。计算并比较了应力/应变模式,并评估了微螺钉的位移。结果。应力/应变分布随各种骨-植入物界面而变化。在骨整合为0%的情况下,可以预测到相当均匀的分布。 15%骨整合后,应力/应变逐渐集中在皮质骨区域。在无骨整合的条件下,微型螺钉经历了最大的位移。最大位移从0%急剧下降到3%,并趋于稳定。结论。从生物力学的角度来看,可以建议在大约15%的骨整合后,将正畸加载施加到微型螺钉上,而不会损失任何稳定性。

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