Literature DB >> 23913183

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

Kuo-Chih Su1, Shu-Fen Chuang, Eddie Yin-Kwee Ng, Chih-Han Chang.   

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.

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Year:  2013        PMID: 23913183     DOI: 10.1007/s10237-013-0514-z

Source DB:  PubMed          Journal:  Biomech Model Mechanobiol        ISSN: 1617-7940


  3 in total

1.  Biomechanical analysis of acromioclavicular joint dislocation treated with clavicle hook plates in different lengths.

Authors:  Cheng-Min Shih; Kui-Chou Huang; Chien-Chou Pan; Cheng-Hung Lee; Kuo-Chih Su
Journal:  Int Orthop       Date:  2015-07-17       Impact factor: 3.075

Review 2.  Thermal Pain in Teeth: Electrophysiology Governed by Thermomechanics.

Authors:  Min Lin; Guy M Genin; Feng Xu; TianJian Lu
Journal:  Appl Mech Rev       Date:  2014-04-18       Impact factor: 7.281

3.  Designing and testing regenerative pulp treatment strategies: modeling the transdentinal transport mechanisms.

Authors:  Agathoklis D Passos; Aikaterini A Mouza; Spiros V Paras; Christos Gogos; Dimitrios Tziafas
Journal:  Front Physiol       Date:  2015-09-15       Impact factor: 4.566

  3 in total

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