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Article dans une revue

Mechanical behavior of CAD/CAM occlusal ceramic reconstruction assessed by digital color holography

Abstract : OBJECTIVES: CAD/CAM ceramic occlusal veneers are increasingly used as therapeutic options. However, little is known about their mechanical behavior under stress, as the response of the prepared tooth that supports it. The aim of this article is to use for the first time 3D color holography to evaluate the behavior of a molar occlusal veneer under stress and the response of the prepared tooth. METHODS: The occlusal surface of a lower molar is prepared to receive a specific monolithic ceramic reconstruction manufactured with a chairside CAD/CAM system. Longitudinally cut samples are used to get a planar object observation and to "look inside" the tooth. A digital holographic set-up permits to obtain the contact-less and one-shot measurement of the three-dimensional displacement field at the surface of the tooth sample; stain fields are evaluated with low noise-sensitive computation. RESULTS: Figures show the strain fields with micro-strain units and highlight the behavior of the ROI (region of interest) in the three directions of space. The ROI are: the ceramic, the glue junction, the dentin enamel junction, dentin and enamel. The results show an excellent behavior of the restored tooth without areas of excessive stress concentrations, but also a significant involvement of the dentin enamel junction. SIGNIFICANCE: The ceramic occlusal veneer seems to behave in accordance with the biomechanical concepts ensuring the longevity of the reconstituted tooth. 3D holography is a highly recommended method for studying dental biomechanics.
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https://hal.archives-ouvertes.fr/hal-02320498
Contributeur : Pascale Roussel <>
Soumis le : vendredi 18 octobre 2019 - 17:49:05
Dernière modification le : vendredi 5 février 2021 - 10:04:01

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H. Xia, Pascal Picart, S. Montresor, R. Guo, J. C. Li, et al.. Mechanical behavior of CAD/CAM occlusal ceramic reconstruction assessed by digital color holography. Dental Materials, Elsevier, 2018, 34 (8), pp.1222--1234. ⟨10.1016/j.dental.2018.05.007⟩. ⟨hal-02320498⟩

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