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使用微型螺钉对前牙进行真性压低时牙齿和骨骼生物力学效应的三维有限元分析

A 3D finite element analysis of biomechanical effects on teeth and bone during true intrusion of anteriors using miniscrews.

作者信息

Bharadwaj Ankit, Ahuja Sachin, Uppal Japjee, Bhambri Eenal, Sewta Renu, Gupta Seema

机构信息

Rajasthan University of Health Sciences, Surendera Dental College and Research Institute, Department of Orthodontics and Dentofacial Orthopaedics, Sri Ganganagar, Rajasthan, 335001, India.

Rajasthan University of Health Sciences, Surendera Dental College and Research Institute, Department of Prosthodontics and Crown and Bridge, Sri Ganganagar, Rajasthan 335001, India.

出版信息

Int Orthod. 2025 Mar;23(1):100925. doi: 10.1016/j.ortho.2024.100925. Epub 2024 Oct 10.

Abstract

PURPOSE

The primary objective of this study was to investigate the biomechanical effects and stresses on bone, periodontal ligament (PDL), cementum and displacement along X-, Y- and Z-axis during true intrusion of incisors using mini-implants with Finite Element Analysis; the secondary objective of the study was to find out the best method for anterior intrusion in clinical practice to treat anterior deep bite malocclusions.

MATERIALS AND METHODS

A 3D finite element method was used to simulate true anterior intrusion with sliding mechanics using mini-implants. Two groups were modelled with mini-implants placed distal to lateral incisors for Model 1, and below the anterior nasal spine (ANS) for Model 2, to achieve intrusion. von Mises stress, principal stress on PDL and alveolar bone, displacements in all 3 planes were determined.

RESULTS

Amongst the modalities compared in the present study, the stresses on bone and PDL were showing best behavior for mini-implants placed distal to lateral incisors (Model 1). The teeth showed controlled tooth movement in Model 1.

CONCLUSION

Maximum stress was found in the cortical bone and in the PDL. Nature of the stress changed from compressive to tensile from cervical area to root apex, concentrating mainly at the apical area. Amongst the modalities compared, the best controlled tooth movements for anterior intrusion to treat anterior deep bite malocclusions, was for mini-implants placed distal to lateral incisors (Model 1).

摘要

目的

本研究的主要目的是通过有限元分析,研究使用微型种植体进行切牙真正压低时对骨、牙周膜(PDL)、牙骨质的生物力学影响和应力以及沿X、Y和Z轴的位移;该研究的次要目的是找出临床实践中治疗前牙深覆合错牙合畸形的最佳前牙压低方法。

材料与方法

采用三维有限元方法模拟使用微型种植体的滑动力学进行真正的前牙压低。建立两组模型,模型1将微型种植体放置在侧切牙远中,模型2将微型种植体放置在前鼻棘(ANS)下方,以实现压低。测定von Mises应力、牙周膜和牙槽骨上的主应力以及所有三个平面的位移。

结果

在本研究比较的方式中,放置在侧切牙远中的微型种植体(模型1)对骨和牙周膜的应力表现最佳。模型1中的牙齿表现出可控的牙齿移动。

结论

在皮质骨和牙周膜中发现最大应力。应力性质从颈部区域到根尖从压缩变为拉伸,主要集中在根尖区域。在比较的方式中,治疗前牙深覆合错牙合畸形进行前牙压低时,对牙齿移动控制最佳的是放置在侧切牙远中的微型种植体(模型1)。

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