Influence of endodontic access cavity design on mechanical properties of a first mandibular premolar tooth: a finite element analysis study

T Özyürek, G Uslu, B Arıcan, M Gündoğar… - Clinical Oral …, 2024 - Springer
Objectives This study aimed to investigate the influence of access cavity designs on the
mechanical properties of a single-rooted mandibular first premolar tooth under various static …

Biomechanical performance of resin composite on dental tissue restoration: A finite element analysis

A Ouldyerou, H Mehboob, A Mehboob, A Merdji… - Plos one, 2023 - journals.plos.org
This study investigates the biomechanical performance of various dental materials when
filled in different cavity designs and their effects on surrounding dental tissues. Finite …

Comparison of resin cement's different thicknesses and Poisson's ratios on the stress distribution of class II amalgam restoration using finite element analysis

HY Gönder, YD Fidancıoğlu, M Fidan, R Mohammadi… - Applied Sciences, 2023 - mdpi.com
Using a three-dimensional finite element analysis, this study aimed to evaluate the effect of
different cements' thicknesses and Poisson's ratios on the stress distribution in enamel …

Teeth Restored with Bulk–Fill Composites and Conventional Resin Composites; Investigation of Stress Distribution and Fracture Lifespan on Enamel, Dentin, and …

HY Gönder, R Mohammadi, A Harmankaya, İB Yüksel… - Polymers, 2023 - mdpi.com
Objectives: the aim of this study was to examine the stress distribution of enamel, dentin, and
restorative materials in sound first molar teeth with restored cavities with conventional resin …

Spatially Resolved Elastic Modulus of Magnesium Silicate Hydrate: A Cementitious Material

A Syed, TTM Nguyen, E La Plante - ACS Applied Engineering …, 2024 - ACS Publications
Magnesium-based cement such as magnesium silicate hydrate (M–S–H) has drawn interest
as a substitute for ordinary Portland cement. The precise determination of M–S–H's elastic …