2008PubMedRequires access

[Morphological study of the mechanisms of osteointegration of intraosseal titanium implants].

Grigor'ian As, Filononv Mr, Toporkova Ak

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Abstract

The present study was undertaken to work out a new material based on titanium-coated polytetrafluoroethylene, which would have the integration potential similar to that of titanium implants, which would make it possible to use it as a model to study osseointegration processes. Rat experiments compared titanium implants and a combined model of a titanium-nanocoated polytetrafluoroethylene. The present study has indicated that the new experimental model of the implant opens the door to in-depth investigations of a peri-implant bone regeneration area.

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What this paper is about

The present study was undertaken to work out a new material based on titanium-coated polytetrafluoroethylene, which would have the integration potential similar to that of titanium implants, which would make it possible to use it as a model to study osseointegration processes. Rat experiments compared titanium implants and a combined model of a titanium-nanocoated polytetrafluoroethylene. The present study has indicated that the new experimental model of the implant opens the door to in-depth investigations of a peri-implant bone regeneration area.

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Available abstract

The present study was undertaken to work out a new material based on titanium-coated polytetrafluoroethylene, which would have the integration potential similar to that of titanium implants, which would make it possible to use it as a model to study osseointegration processes. Rat experiments compared titanium implants and a combined model of a titanium-nanocoated polytetrafluoroethylene. The present study has indicated that the new experimental model of the implant opens the door to in-depth investigations of a peri-implant bone regeneration area.

Key concepts: Osseointegration, Titanium, Polytetrafluoroethylene, Implant, Dentistry, Materials science, Biomedical engineering, Medicine

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