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牙周破坏中正畸性外部吸收的评估——有限元分析(第一部分)

Assessment of the Orthodontic External Resorption in Periodontal Breakdown-A Finite Elements Analysis (Part I).

作者信息

Moga Radu Andrei, Olteanu Cristian Doru, Botez Mircea Daniel, Buru Stefan Marius

机构信息

Department of Cariology, Endodontics and Oral Pathology, School of Dental Medicine, University of Medicine and Pharmacy Iuliu Hatieganu, Str. Motilor 33, 400001 Cluj-Napoca, Romania.

Department of Orthodontics, School of Dental Medicine, University of Medicine and Pharmacy Iuliu Hatieganu, Str. Avram Iancu 31, 400083 Cluj-Napoca, Romania.

出版信息

Healthcare (Basel). 2023 May 16;11(10):1447. doi: 10.3390/healthcare11101447.

Abstract

This Finite Elements Analysis (FEA) assessed the accuracy of Tresca failure criteria (maximum shear stress) for the study of external root resorption. Additionally, the tooth absorption-dissipation ability was assessed. Overall, 81 models of the second mandibular premolar, out of a total of 324 simulations, were involved. Five orthodontic movements (intrusion, extrusion, rotation, translation, and tipping) were simulated under 0.6 N and 1.2 N in a horizontal progressive periodontal breakdown simulation of 0-8 mm. In all simulations, Tresca criteria accurately displayed the localized areas of maximum stress prone to external resorption risks, seeming to be adequate for the study of the resorptive process. The localized areas were better displayed in the radicular dentine-cementum component than in the entire tooth structure. The rotation and translation seem prone to a higher risk of external root resorption after 4 mm of loss. The resorptive risks seem to increase along with the progression of periodontal breakdown if the same amount of applied force is guarded. The localized resorption-prone areas follow the progression of bone loss. The two light forces displayed similar extensions of maximum stress areas. The stress displayed in the coronal dentine decreases along with the progression of bone loss. The absorption-dissipation ability of the tooth is about 87.99-97.99% of the stress.

摘要

本有限元分析(FEA)评估了特雷斯卡失效准则(最大剪应力)在研究牙根外吸收方面的准确性。此外,还评估了牙齿的吸收消散能力。总共进行了324次模拟,其中涉及81个下颌第二前磨牙模型。在0至8毫米的水平渐进性牙周破坏模拟中,在0.6牛和1.2牛的力作用下模拟了五种正畸移动(压入、伸出、旋转、平移和倾斜)。在所有模拟中,特雷斯卡准则准确显示了易于出现外吸收风险的最大应力局部区域,似乎足以用于研究吸收过程。在牙根牙本质-牙骨质成分中,局部区域的显示比在整个牙齿结构中更好。在牙周破坏4毫米后,旋转和平移似乎更容易出现牙根外吸收风险。如果施加相同大小的力,吸收风险似乎会随着牙周破坏的进展而增加。易于出现吸收的局部区域随着骨质流失而发展。两种轻力显示出相似的最大应力区域范围。随着骨质流失的进展,冠部牙本质中显示的应力会降低。牙齿的吸收消散能力约为应力的87.99%-97.99%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20f4/10218551/ba8a9832133c/healthcare-11-01447-g001.jpg

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