正畸与咬合力作用下大鼠牙槽骨内液体流动的数值模拟
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科技部重点研发计划(2018YFF0300800),国家自然科学基金项目(11572043)


Numerical Simulation on Fluid Flow within Rat Alveolar Bone under Orthodontic and Occlusal Loading
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    摘要:

    目的 研究正畸力和动态咬合力作用下牙槽骨内的液体流动情况,为阐明牙槽骨结构重建的调控机理提供基础数据。方法 构建正畸牙齿移动的大鼠动物模型,利用micro-CT技术扫描并三维重建得到牙齿-牙周韧带-牙槽骨整体及第1磨牙近中牙根根尖及颈缘处牙槽骨的真实几何结构。计算正畸力或咬合力作用下牙槽骨的应变分布,并以此为基础,利用流固耦合的数值模拟方法,分析咬合与正畸加载下不同位置处牙槽骨内液体的流动情况。结果 正畸及咬合力作用下,牙槽骨内液体流速主要分布在0~10 μm/s,流体剪切应力(fluid shear stress, FSS)主要分布在0~10 Pa,高流速及高FSS出现在孔隙内的固液交界面上。根尖处牙槽骨表面FSS水平高于颈缘处牙槽骨。结论 正畸力及咬合力的联合作用在牙槽骨不同位置引起不同水平FSS,进而可能刺激牙槽骨骨小梁表面的细胞发生响应,并最终调控牙槽骨结构重建和发生正畸牙移动。研究结果可为牙齿正畸的临床治疗提供理论指导。

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    Objective To study fluid flow within alveolar bone under orthodontic and occlusal loading, so as to provide references for understanding the regulatory mechanism of bone remodeling during orthodontics. Methods An animal model for orthodontic tooth movement on rats was first constructed. The finite element model of tooth-periodontal ligament-alveolar bone was established based on micro-CT images and the strain field in alveolar bone under orthodontic or constant occlusal loading was analyzed. Then finite element model of alveolar bone was constructed from the bone near the cervical margin or apical root of mesial root. The fluid flow in this model under orthodontic and cyclic occlusal loading was further predicted by using fluid-solid coupling numerical simulation. Results The fluid velocity within alveolar bone cavity mainly distributed at 0-10 μm/s, and the fluid shear stress (FSS) was mainly distributed at 0-10 Pa. FSS on the surface of alveolar bone near the apical root was higher than that close to the cervical margin. Conclusions FSS at different levels could be produced at different location within alveolar bone cavity under orthodontic and cyclic occlusal loading, which might further activate biological response of bone cells on the surface of trabeculae and finally regulate the remodeling of alveolar bone and orthodontic movement of tooth. The results provide theoretical guidance for the clinical treatment of orthodontics.

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罗睿,焦飞,孙青,赵振达,冷慧杰,霍波.正畸与咬合力作用下大鼠牙槽骨内液体流动的数值模拟[J].医用生物力学,2020,35(1):57-63

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  • 收稿日期:2019-04-30
  • 最后修改日期:2019-05-12
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  • 在线发布日期: 2020-03-03
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