Effect of Si addition on Ca‐ and P‐impregnated implant surfaces with nanometer‐scale roughness: an experimental study in dogs
Identifieur interne : 003B62 ( Main/Exploration ); précédent : 003B61; suivant : 003B63Effect of Si addition on Ca‐ and P‐impregnated implant surfaces with nanometer‐scale roughness: an experimental study in dogs
Auteurs : Paulo G. Coelho [États-Unis] ; Rodrigo Granato [Brésil] ; Charles Marin [Brésil] ; Ryo Jimbo [Suède] ; Siyan Lin [États-Unis] ; Lukasz Witek [États-Unis] ; Marcelo Suzuki [États-Unis] ; Estevam A. Bonfante [Brésil]Source :
- Clinical Oral Implants Research [ 0905-7161 ] ; 2012-03.
Descripteurs français
- Wicri :
- topic : Biomatériau, Titane.
English descriptors
- KwdEn :
- Albrektsson, Albrektsson wennerberg, Animal model, Animal study, Biomaterials, Biomechanical, Biomedical, Biomedical materials research, Biomedical materials research part, Bone cell activity, Bone formation, Bone healing, Bone integration, Bone organization, Bone response, Calcium phosphate, Clinical implant dentistry, Coelho, Coelho lemons, Coelho suzuki, Dental implant surfaces, Dental implant survival, Dental implants, Dental research, Dentistry, Different surfaces, Dohan, Dohan ehrenfest, Dunn test, Early biomechanical, Early healing, Ehrenfest, Elias meirelles, Endosseous implants, Ethicon johnson, Experimental group, Experimental study, Experimental surface, Friedman test, Granato, High survival rates, Higher degrees, Histomorphometric, Histomorphometric evaluation, Implant, Implant design, Implant surface, Implant surfaces, Implants research, International journal, Intimate contact, Jimbo, John wiley sons, John wiley sons coelho, Lamellar bone, Leica microsystems gmbh, Melin svanborg, Mendes, Micrometer, Nanometer, Nanometer length scale, Nanometer surfaces, Optical interferometry, Optical microscopy, Oral impl, Oral implant surfaces, Other half, Photoelectron spectroscopy, Present study, Proximal tibia, Resorbable media, Rough surfaces, Roughness, Santa catarina, Scanning electron microscopy, Sharp dissection, Similar response, Statistical evaluation, Surface characterization, Surface chemistry, Surface texture, Surface topography, Surgical procedure, Suzuki, Tibia, Titanium, Titanium oxide layer, Torque values, Wennerberg, Wennerberg albrektsson.
- Teeft :
- Albrektsson, Albrektsson wennerberg, Animal model, Animal study, Biomaterials, Biomechanical, Biomedical, Biomedical materials research, Biomedical materials research part, Bone cell activity, Bone formation, Bone healing, Bone integration, Bone organization, Bone response, Calcium phosphate, Clinical implant dentistry, Coelho, Coelho lemons, Coelho suzuki, Dental implant surfaces, Dental implant survival, Dental implants, Dental research, Dentistry, Different surfaces, Dohan, Dohan ehrenfest, Dunn test, Early biomechanical, Early healing, Ehrenfest, Elias meirelles, Endosseous implants, Ethicon johnson, Experimental group, Experimental study, Experimental surface, Friedman test, Granato, High survival rates, Higher degrees, Histomorphometric, Histomorphometric evaluation, Implant, Implant design, Implant surface, Implant surfaces, Implants research, International journal, Intimate contact, Jimbo, John wiley sons, John wiley sons coelho, Lamellar bone, Leica microsystems gmbh, Melin svanborg, Mendes, Micrometer, Nanometer, Nanometer length scale, Nanometer surfaces, Optical interferometry, Optical microscopy, Oral impl, Oral implant surfaces, Other half, Photoelectron spectroscopy, Present study, Proximal tibia, Resorbable media, Rough surfaces, Roughness, Santa catarina, Scanning electron microscopy, Sharp dissection, Similar response, Statistical evaluation, Surface characterization, Surface chemistry, Surface texture, Surface topography, Surgical procedure, Suzuki, Tibia, Titanium, Titanium oxide layer, Torque values, Wennerberg, Wennerberg albrektsson.
Abstract
Objectives: To investigate the effect of Si addition on a nanometer‐scale roughness Ca and P implant surfaces in a canine tibia model by biomechanical and histomorphometric evaluations.
Url:
DOI: 10.1111/j.1600-0501.2010.02150.x
Affiliations:
- Brésil, Suède, États-Unis
- Götaland, Massachusetts, Santa Catarina, Suède occidentale, État de New York, État de São Paulo
- Göteborg, São Paulo
- Université de Göteborg, Université de São Paulo
Links toward previous steps (curation, corpus...)
- to stream Istex, to step Corpus: 004970
- to stream Istex, to step Curation: 004970
- to stream Istex, to step Checkpoint: 001032
- to stream Main, to step Merge: 003B79
- to stream Main, to step Curation: 003B62
Le document en format XML
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<term>Animal model</term>
<term>Animal study</term>
<term>Biomaterials</term>
<term>Biomechanical</term>
<term>Biomedical</term>
<term>Biomedical materials research</term>
<term>Biomedical materials research part</term>
<term>Bone cell activity</term>
<term>Bone formation</term>
<term>Bone healing</term>
<term>Bone integration</term>
<term>Bone organization</term>
<term>Bone response</term>
<term>Calcium phosphate</term>
<term>Clinical implant dentistry</term>
<term>Coelho</term>
<term>Coelho lemons</term>
<term>Coelho suzuki</term>
<term>Dental implant surfaces</term>
<term>Dental implant survival</term>
<term>Dental implants</term>
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<term>Dentistry</term>
<term>Different surfaces</term>
<term>Dohan</term>
<term>Dohan ehrenfest</term>
<term>Dunn test</term>
<term>Early biomechanical</term>
<term>Early healing</term>
<term>Ehrenfest</term>
<term>Elias meirelles</term>
<term>Endosseous implants</term>
<term>Ethicon johnson</term>
<term>Experimental group</term>
<term>Experimental study</term>
<term>Experimental surface</term>
<term>Friedman test</term>
<term>Granato</term>
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<term>Higher degrees</term>
<term>Histomorphometric</term>
<term>Histomorphometric evaluation</term>
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<term>Implant design</term>
<term>Implant surface</term>
<term>Implant surfaces</term>
<term>Implants research</term>
<term>International journal</term>
<term>Intimate contact</term>
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<term>John wiley sons</term>
<term>John wiley sons coelho</term>
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<term>Melin svanborg</term>
<term>Mendes</term>
<term>Micrometer</term>
<term>Nanometer</term>
<term>Nanometer length scale</term>
<term>Nanometer surfaces</term>
<term>Optical interferometry</term>
<term>Optical microscopy</term>
<term>Oral impl</term>
<term>Oral implant surfaces</term>
<term>Other half</term>
<term>Photoelectron spectroscopy</term>
<term>Present study</term>
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<term>Resorbable media</term>
<term>Rough surfaces</term>
<term>Roughness</term>
<term>Santa catarina</term>
<term>Scanning electron microscopy</term>
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<term>Similar response</term>
<term>Statistical evaluation</term>
<term>Surface characterization</term>
<term>Surface chemistry</term>
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<term>Surface topography</term>
<term>Surgical procedure</term>
<term>Suzuki</term>
<term>Tibia</term>
<term>Titanium</term>
<term>Titanium oxide layer</term>
<term>Torque values</term>
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<term>Wennerberg albrektsson</term>
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<term>Albrektsson wennerberg</term>
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<term>Animal study</term>
<term>Biomaterials</term>
<term>Biomechanical</term>
<term>Biomedical</term>
<term>Biomedical materials research</term>
<term>Biomedical materials research part</term>
<term>Bone cell activity</term>
<term>Bone formation</term>
<term>Bone healing</term>
<term>Bone integration</term>
<term>Bone organization</term>
<term>Bone response</term>
<term>Calcium phosphate</term>
<term>Clinical implant dentistry</term>
<term>Coelho</term>
<term>Coelho lemons</term>
<term>Coelho suzuki</term>
<term>Dental implant surfaces</term>
<term>Dental implant survival</term>
<term>Dental implants</term>
<term>Dental research</term>
<term>Dentistry</term>
<term>Different surfaces</term>
<term>Dohan</term>
<term>Dohan ehrenfest</term>
<term>Dunn test</term>
<term>Early biomechanical</term>
<term>Early healing</term>
<term>Ehrenfest</term>
<term>Elias meirelles</term>
<term>Endosseous implants</term>
<term>Ethicon johnson</term>
<term>Experimental group</term>
<term>Experimental study</term>
<term>Experimental surface</term>
<term>Friedman test</term>
<term>Granato</term>
<term>High survival rates</term>
<term>Higher degrees</term>
<term>Histomorphometric</term>
<term>Histomorphometric evaluation</term>
<term>Implant</term>
<term>Implant design</term>
<term>Implant surface</term>
<term>Implant surfaces</term>
<term>Implants research</term>
<term>International journal</term>
<term>Intimate contact</term>
<term>Jimbo</term>
<term>John wiley sons</term>
<term>John wiley sons coelho</term>
<term>Lamellar bone</term>
<term>Leica microsystems gmbh</term>
<term>Melin svanborg</term>
<term>Mendes</term>
<term>Micrometer</term>
<term>Nanometer</term>
<term>Nanometer length scale</term>
<term>Nanometer surfaces</term>
<term>Optical interferometry</term>
<term>Optical microscopy</term>
<term>Oral impl</term>
<term>Oral implant surfaces</term>
<term>Other half</term>
<term>Photoelectron spectroscopy</term>
<term>Present study</term>
<term>Proximal tibia</term>
<term>Resorbable media</term>
<term>Rough surfaces</term>
<term>Roughness</term>
<term>Santa catarina</term>
<term>Scanning electron microscopy</term>
<term>Sharp dissection</term>
<term>Similar response</term>
<term>Statistical evaluation</term>
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<term>Surface chemistry</term>
<term>Surface texture</term>
<term>Surface topography</term>
<term>Surgical procedure</term>
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<term>Tibia</term>
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<front><div type="abstract">Objectives: To investigate the effect of Si addition on a nanometer‐scale roughness Ca and P implant surfaces in a canine tibia model by biomechanical and histomorphometric evaluations.</div>
</front>
</TEI>
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