Biomechanical analysis of implant treatment for fully edentulous maxillae with different bone quality

Takaaki Arahira, Mitsugu Todo, Yasuyuki Matsushita, Kiyoshi Koyano

研究成果: 書籍/レポート タイプへの寄稿会議への寄与

抄録

Three-dimensional maxillary bone models were constructed using the CT-images of a male and a female patient. The distribution of Young's modulus was estimated from the bone mineral density distribution. Six implants were embedded into these maxillary models and for each model, a metal prosthesis was attached to the tops of the implants. Finite element analysis of these maxilla models was then performed in order to characterize the effects of bone quality on the stress state under an equivalent loading condition. In both the models, strain energy density was concentrated especially around the right-molar implant, suggesting that bone damage and absorption might take place in this region. A modified replacement of the right-molar implant was introduced into the female model and successfully reduced the concentration of strain energy density. It is thus concluded that this kind of 3-D modeling could clinically be used to predict the optimal implant treatment for each of the patients.

本文言語英語
ホスト出版物のタイトル6th World Congress of Biomechanics, WCB 2010 - In Conjunction with 14th International Conference on Biomedical Engineering, ICBME and 5th Asia Pacific Conference on Biomechanics, APBiomech
ページ961-964
ページ数4
DOI
出版ステータス出版済み - 2010
イベント6th World Congress of Biomechanics, WCB 2010 - In Conjunction with 14th International Conference on Biomedical Engineering, ICBME and 5th Asia Pacific Conference on Biomechanics, APBiomech - Singapore, シンガポール
継続期間: 8月 1 20108月 6 2010

出版物シリーズ

名前IFMBE Proceedings
31 IFMBE
ISSN(印刷版)1680-0737

その他

その他6th World Congress of Biomechanics, WCB 2010 - In Conjunction with 14th International Conference on Biomedical Engineering, ICBME and 5th Asia Pacific Conference on Biomechanics, APBiomech
国/地域シンガポール
CitySingapore
Period8/1/108/6/10

!!!All Science Journal Classification (ASJC) codes

  • バイオエンジニアリング
  • 生体医工学

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