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牙本质液在咀嚼食物过程中向牙髓内的流动研究:流固耦合模拟。

An investigation of dentinal fluid flow in dental pulp during food mastication: simulation of fluid-structure interaction.

机构信息

Department of Biomedical Engineering College of Engineering, National Cheng Kung University, 1 University Road, Tainan City, 701, Taiwan.

出版信息

Biomech Model Mechanobiol. 2014 Jun;13(3):527-35. doi: 10.1007/s10237-013-0514-z. Epub 2013 Aug 4.

Abstract

This study uses fluid-structure interaction (FSI) simulation to investigate the relationship between the dentinal fluid flow in the dental pulp of a tooth and the elastic modulus of masticated food particles and to investigate the effects of chewing rate on fluid flow in the dental pulp. Three-dimensional simulation models of a premolar tooth (enamel, dentine, pulp, periodontal ligament, cortical bone, and cancellous bone) and food particle were created. Food particles with elastic modulus of 2,000 and 10,000 MPa were used, respectively. The external displacement loading (5 μm) was gradually directed to the food particle surface for 1 and 0.1 s, respectively, to simulate the chewing of food particles. The displacement and stress on tooth structure and fluid flow in the dental pulp were selected as evaluation indices. The results show that masticating food with a high elastic modulus results in high stress and deformation in the tooth structure, causing faster dentinal fluid flow in the pulp in comparison with that obtained with soft food. In addition, fast chewing of hard food particles can induce faster fluid flow in the pulp, which may result in dental pain. FSI analysis is shown to be a useful tool for investigating dental biomechanics during food mastication. FSI simulation can be used to predict intrapulpal fluid flow in dental pulp; this information may provide the clinician with important concept in dental biomechanics during food mastication.

摘要

本研究采用流固耦合(FSI)模拟方法,研究了牙齿牙髓内牙本质液流与咀嚼食物颗粒弹性模量之间的关系,并探讨了咀嚼速度对牙髓内流体流动的影响。建立了前磨牙(釉质、牙本质、牙髓、牙周韧带、皮质骨和松质骨)和食物颗粒的三维模拟模型。分别使用弹性模量为 2000 和 10000 MPa 的食物颗粒。分别对食物颗粒表面施加 5 μm 的外部位移加载,持续时间为 1 和 0.1 s,以模拟咀嚼食物颗粒的过程。选择牙齿结构的位移和应力以及牙髓内的流体流动作为评估指标。结果表明,咀嚼具有高弹性模量的食物会导致牙齿结构中的高应力和变形,从而使牙髓内的牙本质液流动速度比咀嚼软食物时更快。此外,快速咀嚼硬食物颗粒会导致牙髓内的流体流动更快,这可能会导致牙痛。FSI 分析被证明是研究食物咀嚼过程中牙齿生物力学的有用工具。FSI 模拟可用于预测牙髓内的流体流动;这些信息可能为临床医生提供在食物咀嚼过程中牙齿生物力学的重要概念。

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