The role of bone debris in early healing adjacent to hydrophilic and hydrophobic implant surfaces in man
Identifieur interne : 004448 ( Main/Exploration ); précédent : 004447; suivant : 004449The role of bone debris in early healing adjacent to hydrophilic and hydrophobic implant surfaces in man
Auteurs : Dieter D. Bosshardt [Suisse] ; Giovanni E. Salvi [Suisse] ; Guy Huynh-Ba [Suisse, États-Unis] ; Saso Ivanovski [Australie] ; Nikolaos Donos [Royaume-Uni] ; Niklaus P. Lang [Suisse, République populaire de Chine]Source :
- Clinical Oral Implants Research [ 0905-7161 ] ; 2011-04.
Descripteurs français
- Wicri :
- topic : Titane.
English descriptors
- KwdEn :
- Apposition, Berne, Biomedical materials research, Bone, Bone apposition, Bone debris, Bone formation, Bone integration, Bone particles, Bone resorption, Bosshardt, Buser, Clin, Cochran, Debris, Device surface, Direct contact, Donos, Healing, Hydrophobic implant surfaces, Impl, Implant, Implant surface, Implant surfaces, Implants research, Ivanovski, John wiley sons, Lang, Light micrographs, Matrix, Mineralized, Mineralized bone matrix, Mineralized matrix, Oral impl, Osseointegration, Osseointegration events, Osteoblast, Osteoclast, Osteoid, Periodontology, Present study, Protein adsorption, Resorption, Rough implant surfaces, Rough surfaces, Sandblasted, Slactive, Slactive implant, Slactive surface, Soft tissue, Solid bone particles, Test devices, Tissue matrix, Titanium, Titanium implants, Titanium surface, Titanium surfaces, Trabecular, Trabecular network.
- Teeft :
- Apposition, Berne, Biomedical materials research, Bone, Bone apposition, Bone debris, Bone formation, Bone integration, Bone particles, Bone resorption, Bosshardt, Buser, Clin, Cochran, Debris, Device surface, Direct contact, Donos, Healing, Hydrophobic implant surfaces, Impl, Implant, Implant surface, Implant surfaces, Implants research, Ivanovski, John wiley sons, Lang, Light micrographs, Matrix, Mineralized, Mineralized bone matrix, Mineralized matrix, Oral impl, Osseointegration, Osseointegration events, Osteoblast, Osteoclast, Osteoid, Periodontology, Present study, Protein adsorption, Resorption, Rough implant surfaces, Rough surfaces, Sandblasted, Slactive, Slactive implant, Slactive surface, Soft tissue, Solid bone particles, Test devices, Tissue matrix, Titanium, Titanium implants, Titanium surface, Titanium surfaces, Trabecular, Trabecular network.
Abstract
Objective: To evaluate morphologically and morphometrically the sequential healing and osseointegration events at moderately rough implant surfaces with and without chemical modification. Particularly the role of bone debris in initiating bone formation was emphasized.
Url:
DOI: 10.1111/j.1600-0501.2010.02107.x
Affiliations:
- Australie, Royaume-Uni, République populaire de Chine, Suisse, États-Unis
- Angleterre, Canton de Berne, Grand Londres, Texas
- Berne, Londres
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Le document en format XML
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<term>Biomedical materials research</term>
<term>Bone</term>
<term>Bone apposition</term>
<term>Bone debris</term>
<term>Bone formation</term>
<term>Bone integration</term>
<term>Bone particles</term>
<term>Bone resorption</term>
<term>Bosshardt</term>
<term>Buser</term>
<term>Clin</term>
<term>Cochran</term>
<term>Debris</term>
<term>Device surface</term>
<term>Direct contact</term>
<term>Donos</term>
<term>Healing</term>
<term>Hydrophobic implant surfaces</term>
<term>Impl</term>
<term>Implant</term>
<term>Implant surface</term>
<term>Implant surfaces</term>
<term>Implants research</term>
<term>Ivanovski</term>
<term>John wiley sons</term>
<term>Lang</term>
<term>Light micrographs</term>
<term>Matrix</term>
<term>Mineralized</term>
<term>Mineralized bone matrix</term>
<term>Mineralized matrix</term>
<term>Oral impl</term>
<term>Osseointegration</term>
<term>Osseointegration events</term>
<term>Osteoblast</term>
<term>Osteoclast</term>
<term>Osteoid</term>
<term>Periodontology</term>
<term>Present study</term>
<term>Protein adsorption</term>
<term>Resorption</term>
<term>Rough implant surfaces</term>
<term>Rough surfaces</term>
<term>Sandblasted</term>
<term>Slactive</term>
<term>Slactive implant</term>
<term>Slactive surface</term>
<term>Soft tissue</term>
<term>Solid bone particles</term>
<term>Test devices</term>
<term>Tissue matrix</term>
<term>Titanium</term>
<term>Titanium implants</term>
<term>Titanium surface</term>
<term>Titanium surfaces</term>
<term>Trabecular</term>
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<term>Bone formation</term>
<term>Bone integration</term>
<term>Bone particles</term>
<term>Bone resorption</term>
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<term>Buser</term>
<term>Clin</term>
<term>Cochran</term>
<term>Debris</term>
<term>Device surface</term>
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<term>Healing</term>
<term>Hydrophobic implant surfaces</term>
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<term>Implant surface</term>
<term>Implant surfaces</term>
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<term>John wiley sons</term>
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<term>Light micrographs</term>
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<term>Mineralized matrix</term>
<term>Oral impl</term>
<term>Osseointegration</term>
<term>Osseointegration events</term>
<term>Osteoblast</term>
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<term>Osteoid</term>
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<term>Protein adsorption</term>
<term>Resorption</term>
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<term>Rough surfaces</term>
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<term>Slactive implant</term>
<term>Slactive surface</term>
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<term>Test devices</term>
<term>Tissue matrix</term>
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<term>Titanium implants</term>
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<term>Titanium surfaces</term>
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<front><div type="abstract">Objective: To evaluate morphologically and morphometrically the sequential healing and osseointegration events at moderately rough implant surfaces with and without chemical modification. Particularly the role of bone debris in initiating bone formation was emphasized.</div>
</front>
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