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Biomechanical effects of titanium implants with full arch

Academic Article
Publication Date:
2007
abstract:
A composite model of the mandible, constituted by an inner polymeric core and a glass fibre reinforced outer shell, has been developed and equipped with six ITI titanium implants and a full gold alloy arch bridge prosthesis. The effects of this oral rehabilitation on the biomechanics of the mandible are investigated through a simulation of the lateral component of the pterygoid muscles. These muscles are involved as the mouth is opened and closed, hence their activity is very frequent. An increase of the mandible stiffness due to the prosthesis is observed; moreover, the coupling of the relatively stiff rehabilitation devices with the natural tissue analogue leads to stressshielding and stress-concentration in the incisal and molar regions, respectively. Although the amplitude of the force generated by pterygoid muscles is quite small, high strains over the incisal region are measured. A stress-shielding effect, of about 20%, is observed at the symphysis as the full arch bridge prosthesis is fixed on the implants. Therefore, the presence of the prosthesis leads to significant modification of the stress field experienced by the mandible, and this may be relevant in relation to the biomechanics of mandibular bone remodelling.
Iris type:
01.01 Articolo in rivista
Keywords:
Dental implants; Arch bridge prosthesis; Composite model; Mechanical properties; Stress-shielding
List of contributors:
Ambrosio, Luigi; DE SANTIS, Roberto
Authors of the University:
AMBROSIO LUIGI
DE SANTIS ROBERTO
Handle:
https://iris.cnr.it/handle/20.500.14243/45361
Published in:
ACTA BIOTECHNOLOGICA
Journal
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