Stress distribution and displacement in the maxillofacial complex during intrusion and distalization of the maxillary arch using miniplates versus mini-implants: a 3-dimensional finite element study.

IF 4.8 2区 医学 Q1 Dentistry Progress in Orthodontics Pub Date : 2023-03-01 DOI:10.1186/s40510-023-00455-6
Abinaya Somaskandhan, N M Vijay Kumar, R Devaki Vijayalakshmi
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引用次数: 1

Abstract

Objectives: To three-dimensionally analyse the stress distribution and displacement pattern in the maxillofacial complex following intrusion and distalization of the maxillary arch using finite element analysis in skeletal class II malocclusion with prognathic maxilla and vertical maxillary excess using miniplates and mini-implants.

Materials and methods: Finite Element models of a skull, Y-shaped stainless steel miniplate, mini-implant and a posted arch were generated. Three force levels (1) 200 g (2) 300 g and (3) 500 g per side were applied to the assembly. The models were pre-processed and the analysis was performed using ANSYS version 18.1 software. Alterations in von mises stress, principal maximum stress, principal minimum stress and compressive stress were analysed around the sutures and surface landmarks.

Results: With miniplates, there was a maximum stress concentration at the zygomatic buttress with even stress distribution at the fronto-maxillary, zygomatico-temporal, zygomatico-frontal and pterygomaxillary sutures along with anatomical landmarks such as frontal process of maxilla, ANS, Point A, prosthion and maxillary process of zygoma. First molars experienced greater distalization effects with buccal flaring when miniplates were used. With mini-implants, canine and premolars also exhibited greater distalization effects. In the root apices, lateral incisors showed increased lingual root movement with mini-implants.

Conclusion: Miniplates provide a greater distalizing effect while mini-implants produce increased intrusive effect. The distalizing effect is greater when 500 g of force is applied using miniplates with significantly even stress distribution and displacement pattern.

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微型钢板与微型种植体在上颌弓内伸和外伸过程中颌面复合体的应力分布和位移:三维有限元研究
目的:应用有限元分析方法,对颌骨ⅱ类错颌前颌和垂直上颌过度患者应用微型钢板和微型种植体进行上颌弓突突和远突后颌面复合体的应力分布和位移模式进行三维分析。材料与方法:制作颅骨、y形不锈钢微型钢板、微型种植体和立柱弓的有限元模型。组件每侧施加三个力水平(1)200g (2) 300g和(3)500g。采用ANSYS 18.1版软件对模型进行预处理和分析。在缝合处和表面标志处分析von mises应力、主最大应力、主最小应力和压应力的变化。结果:微型钢板在颧支撑处应力集中最大,在前颌缝、颧颞缝、颧额缝、翼颌缝处应力分布均匀,且在上颌骨额突、ANS、a点、假体、颧突等解剖标志处应力分布均匀。第一磨牙在使用微型牙板时,有较好的远端效果。使用微型种植体,犬齿和前磨牙也表现出更大的远端效果。在根尖,侧切牙显示增加舌根运动与微型种植体。结论:小型钢板具有较好的离体效果,而小型种植体具有较强的侵入性。当使用应力分布和位移模式明显均匀的微型板施加500g力时,远距效果更大。
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来源期刊
Progress in Orthodontics
Progress in Orthodontics Dentistry-Orthodontics
CiteScore
7.30
自引率
4.20%
发文量
45
审稿时长
13 weeks
期刊介绍: Progress in Orthodontics is a fully open access, international journal owned by the Italian Society of Orthodontics and published under the brand SpringerOpen. The Society is currently covering all publication costs so there are no article processing charges for authors. It is a premier journal of international scope that fosters orthodontic research, including both basic research and development of innovative clinical techniques, with an emphasis on the following areas: • Mechanisms to improve orthodontics • Clinical studies and control animal studies • Orthodontics and genetics, genomics • Temporomandibular joint (TMJ) control clinical trials • Efficacy of orthodontic appliances and animal models • Systematic reviews and meta analyses • Mechanisms to speed orthodontic treatment Progress in Orthodontics will consider for publication only meritorious and original contributions. These may be: • Original articles reporting the findings of clinical trials, clinically relevant basic scientific investigations, or novel therapeutic or diagnostic systems • Review articles on current topics • Articles on novel techniques and clinical tools • Articles of contemporary interest
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