Stress distribution around dental implants: influence of superstructure, length of implants, and height of mandible.
Identifieur interne : 00B740 ( Main/Merge ); précédent : 00B739; suivant : 00B741Stress distribution around dental implants: influence of superstructure, length of implants, and height of mandible.
Auteurs : H J Meijer [Pays-Bas] ; J H Kuiper ; F J Starmans ; F. BosmanSource :
- The Journal of prosthetic dentistry [ 0022-3913 ] ; 1992.
Descripteurs français
- KwdFr :
- Conception d'appareil de prothèse dentaire, Contrainte mécanique, Dimension verticale, Force occlusale, Humains, Implants dentaires, Mandibule (anatomopathologie), Mandibule (physiopathologie), Mastication, Modèles biologiques, Mâchoire édentée (anatomopathologie), Mâchoire édentée (physiopathologie), Os et tissu osseux (anatomopathologie), Os et tissu osseux (physiopathologie), Pose d'implant dentaire endo-osseux, Propriétés de surface.
- MESH :
- anatomopathologie : Mandibule, Mâchoire édentée, Os et tissu osseux.
- physiopathologie : Mandibule, Mâchoire édentée, Os et tissu osseux.
- Conception d'appareil de prothèse dentaire, Contrainte mécanique, Dimension verticale, Force occlusale, Humains, Implants dentaires, Mastication, Modèles biologiques, Pose d'implant dentaire endo-osseux, Propriétés de surface.
English descriptors
- KwdEn :
- Bite Force, Bone and Bones (pathology), Bone and Bones (physiopathology), Dental Implantation, Endosseous, Dental Implants, Denture Design, Humans, Jaw, Edentulous (pathology), Jaw, Edentulous (physiopathology), Mandible (pathology), Mandible (physiopathology), Mastication, Models, Biological, Stress, Mechanical, Surface Properties, Vertical Dimension.
- MESH :
- chemical : Dental Implants.
- pathology : Bone and Bones, Jaw, Edentulous, Mandible.
- physiopathology : Bone and Bones, Jaw, Edentulous, Mandible.
- Bite Force, Dental Implantation, Endosseous, Denture Design, Humans, Mastication, Models, Biological, Stress, Mechanical, Surface Properties, Vertical Dimension.
Abstract
The stress distribution around dental implants was investigated by use of a two-dimensional model of the mandible with two implants. A vertical load of 100 N was imposed on abutments or the bar connection. The stress was calculated for a number of superstructures under different loading conditions with the help of the finite element method. The length of the implants and the height of the mandible were also varied. A model with solitary abutments showed a more uniform distribution of the stress when compared with a model with connected abutments. The largest compressive stress was also less in the model without the bar. Using shorter implants did not have a large influence on the stress around the implants. When the height of the mandible was reduced, a substantially larger stress was found in the bone around the implants because of a larger overall deformation of the lower jaw.
PubMed: 1403929
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pubmed:1403929Le document en format XML
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<term>Dental Implantation, Endosseous</term>
<term>Dental Implants</term>
<term>Denture Design</term>
<term>Humans</term>
<term>Jaw, Edentulous (pathology)</term>
<term>Jaw, Edentulous (physiopathology)</term>
<term>Mandible (pathology)</term>
<term>Mandible (physiopathology)</term>
<term>Mastication</term>
<term>Models, Biological</term>
<term>Stress, Mechanical</term>
<term>Surface Properties</term>
<term>Vertical Dimension</term>
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<keywords scheme="KwdFr" xml:lang="fr"><term>Conception d'appareil de prothèse dentaire</term>
<term>Contrainte mécanique</term>
<term>Dimension verticale</term>
<term>Force occlusale</term>
<term>Humains</term>
<term>Implants dentaires</term>
<term>Mandibule (anatomopathologie)</term>
<term>Mandibule (physiopathologie)</term>
<term>Mastication</term>
<term>Modèles biologiques</term>
<term>Mâchoire édentée (anatomopathologie)</term>
<term>Mâchoire édentée (physiopathologie)</term>
<term>Os et tissu osseux (anatomopathologie)</term>
<term>Os et tissu osseux (physiopathologie)</term>
<term>Pose d'implant dentaire endo-osseux</term>
<term>Propriétés de surface</term>
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<term>Mâchoire édentée</term>
<term>Os et tissu osseux</term>
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<term>Mandible</term>
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<term>Mâchoire édentée</term>
<term>Os et tissu osseux</term>
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<term>Jaw, Edentulous</term>
<term>Mandible</term>
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<term>Denture Design</term>
<term>Humans</term>
<term>Mastication</term>
<term>Models, Biological</term>
<term>Stress, Mechanical</term>
<term>Surface Properties</term>
<term>Vertical Dimension</term>
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<term>Contrainte mécanique</term>
<term>Dimension verticale</term>
<term>Force occlusale</term>
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<term>Implants dentaires</term>
<term>Mastication</term>
<term>Modèles biologiques</term>
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<front><div type="abstract" xml:lang="en">The stress distribution around dental implants was investigated by use of a two-dimensional model of the mandible with two implants. A vertical load of 100 N was imposed on abutments or the bar connection. The stress was calculated for a number of superstructures under different loading conditions with the help of the finite element method. The length of the implants and the height of the mandible were also varied. A model with solitary abutments showed a more uniform distribution of the stress when compared with a model with connected abutments. The largest compressive stress was also less in the model without the bar. Using shorter implants did not have a large influence on the stress around the implants. When the height of the mandible was reduced, a substantially larger stress was found in the bone around the implants because of a larger overall deformation of the lower jaw.</div>
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