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Shape Optimization of Bone-Bonding Subperiosteal Devices with Finite Element Analysis

机译:骨结合型骨膜下装置的形状优化及有限元分析

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摘要

Subperiosteal bone-bonding devices have been proposed for less invasive treatments in orthodontics. The device is osseointegrated onto a bone surface without fixation screws and is expected to rapidly attain a bone-bonding strength that successfully meets clinical performance. Hence, the device's optimum shape for rapid and strong bone bonding was examined in this study by finite element analyses. First, a stress analysis was performed for a circular rod device with an orthodontic force parallel to the bone surface, and the estimate of the bone-bonding strength based on the bone fracture criterion was verified with the results of an animal experiment. In total, four cross-sectional rod geometries were investigated: circular (Cr), elliptical (El), semicircular (Sc), and rectangular (Rc). By changing the height of the newly formed bone to mimic the progression of new bone formation, the estimation of the bone-bonding strength was repeated for each geometry. The rod with the Rc cross section exhibited the best performance, followed by those with the Sc, El, and Cr cross sections, from the aspects of the rapid acquisition of strength and the strength itself. Thus, the rectangular cross section is the best for rod-like subperiosteal devices for rapid bone bonding.
机译:已经提出了骨膜下骨接合装置用于正畸中的侵入性较小的治疗。该设备无需固定螺钉就可以骨整合到骨表面,并且有望迅速获得成功满足临床性能的骨结合强度。因此,在这项研究中,通过有限元分析检查了该装置对于快速而牢固的骨结合的最佳形状。首先,对正畸力平行于骨表面的圆棒装置进行应力分析,并通过动物实验的结果验证了基于骨折标准的骨结合强度的估计。总共研究了四种横截面的杆几何形状:圆形(Cr),椭圆形(El),半圆形(Sc)和矩形(Rc)。通过更改新形成的骨骼的高度以模仿新骨骼形成的进程,可以对每种几何形状重复进行骨结合强度的估计。从快速获得强度和强度本身方面来看,具有Rc横截面的棒表现出最好的性能,其次是具有Sc,El和Cr横截面的棒。因此,矩形截面最适合用于快速骨粘结的棒状骨膜下装置。

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