Bone reaction adjacent to microplasma‐sprayed CaP‐coated oral implants subjected to occlusal load, an experimental study in the dog. Part I: short‐term results
Identifieur interne : 005411 ( Main/Exploration ); précédent : 005410; suivant : 005412Bone reaction adjacent to microplasma‐sprayed CaP‐coated oral implants subjected to occlusal load, an experimental study in the dog. Part I: short‐term results
Auteurs : R. Junker [Pays-Bas] ; P. J. D. Manders [Pays-Bas] ; J. Wolke [Pays-Bas] ; Y. Borisov [Ukraine] ; J. A. Jansen [Pays-Bas]Source :
- Clinical Oral Implants Research [ 0905-7161 ] ; 2010-11.
Descripteurs français
- Wicri :
- topic : Titane.
English descriptors
- KwdEn :
- Albrektsson, Alveolar bone, Alveolar ridge, Anova, Apical, Apposition, Biomedical, Biomedical materials research, Bone apposition, Bone contact, Bone data, Bone formation, Bone reaction, Bone response, Borisov, Clin, Clinical periodontology, Coating degradation, Coating thickness, Coronal, Coronal half, Crestal, Degradation, Dense bone, Dental implants, Different implant groups, Distinct areas, Eighth thread, Entire length, Experimental study, Functional load, Functional loading, Hacam, Healing period, Histological, Histomorphometrical evaluation, Hydroxylapatite, Hydroxylapatite coatings, Impl, Implant, Implant surface, Implant surfaces, Implant thread, Implants research, International journal, Jansen, John wiley sons, Junker, Loading, Loading condition, Loading conditions, Mandible, Mandibular, Microplasma, Microplasma spraying, Nemark, Noncoated, Noncoated implants, Occlusal, Occlusal load, Occlusal loading, Oral impl, Oral implants, Oral maxillofacial implants, Other studies, Periodontology, Present study, Resorption, Statistical analysis, Study design, Titanium, Titanium implants, Trabecular bone, Variance, Wolke.
- Teeft :
- Albrektsson, Alveolar bone, Alveolar ridge, Anova, Apical, Apposition, Biomedical, Biomedical materials research, Bone apposition, Bone contact, Bone data, Bone formation, Bone reaction, Bone response, Borisov, Clin, Clinical periodontology, Coating degradation, Coating thickness, Coronal, Coronal half, Crestal, Degradation, Dense bone, Dental implants, Different implant groups, Distinct areas, Eighth thread, Entire length, Experimental study, Functional load, Functional loading, Hacam, Healing period, Histological, Histomorphometrical evaluation, Hydroxylapatite, Hydroxylapatite coatings, Impl, Implant, Implant surface, Implant surfaces, Implant thread, Implants research, International journal, Jansen, John wiley sons, Junker, Loading, Loading condition, Loading conditions, Mandible, Mandibular, Microplasma, Microplasma spraying, Nemark, Noncoated, Noncoated implants, Occlusal, Occlusal load, Occlusal loading, Oral impl, Oral implants, Oral maxillofacial implants, Other studies, Periodontology, Present study, Resorption, Statistical analysis, Study design, Titanium, Titanium implants, Trabecular bone, Variance, Wolke.
Abstract
Background: A new microplasma spraying equipment (MSE) to deposit calcium phosphate ceramic (CaP) coatings onto titanium substrates has been developed. With this system, it is possible to spray fine particles and to apply textured hydroxylapatite coatings onto titanium surfaces. Moreover, due to the low heat power of the microplasma jet, overheating of the powder particles as well as excessive local overheating of the substrate is diminished. Furthermore, because of the small laminar plasma jet, it is possible to achieve high spray efficiency in the case of spraying for dental implants. Also, the low level of noise (25–50 dB) and hardly any dust makes it possible to operate MSE under conditions of normal workrooms.
Url:
DOI: 10.1111/j.1600-0501.2010.01940.x
Affiliations:
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Le document en format XML
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<term>Alveolar bone</term>
<term>Alveolar ridge</term>
<term>Anova</term>
<term>Apical</term>
<term>Apposition</term>
<term>Biomedical</term>
<term>Biomedical materials research</term>
<term>Bone apposition</term>
<term>Bone contact</term>
<term>Bone data</term>
<term>Bone formation</term>
<term>Bone reaction</term>
<term>Bone response</term>
<term>Borisov</term>
<term>Clin</term>
<term>Clinical periodontology</term>
<term>Coating degradation</term>
<term>Coating thickness</term>
<term>Coronal</term>
<term>Coronal half</term>
<term>Crestal</term>
<term>Degradation</term>
<term>Dense bone</term>
<term>Dental implants</term>
<term>Different implant groups</term>
<term>Distinct areas</term>
<term>Eighth thread</term>
<term>Entire length</term>
<term>Experimental study</term>
<term>Functional load</term>
<term>Functional loading</term>
<term>Hacam</term>
<term>Healing period</term>
<term>Histological</term>
<term>Histomorphometrical evaluation</term>
<term>Hydroxylapatite</term>
<term>Hydroxylapatite coatings</term>
<term>Impl</term>
<term>Implant</term>
<term>Implant surface</term>
<term>Implant surfaces</term>
<term>Implant thread</term>
<term>Implants research</term>
<term>International journal</term>
<term>Jansen</term>
<term>John wiley sons</term>
<term>Junker</term>
<term>Loading</term>
<term>Loading condition</term>
<term>Loading conditions</term>
<term>Mandible</term>
<term>Mandibular</term>
<term>Microplasma</term>
<term>Microplasma spraying</term>
<term>Nemark</term>
<term>Noncoated</term>
<term>Noncoated implants</term>
<term>Occlusal</term>
<term>Occlusal load</term>
<term>Occlusal loading</term>
<term>Oral impl</term>
<term>Oral implants</term>
<term>Oral maxillofacial implants</term>
<term>Other studies</term>
<term>Periodontology</term>
<term>Present study</term>
<term>Resorption</term>
<term>Statistical analysis</term>
<term>Study design</term>
<term>Titanium</term>
<term>Titanium implants</term>
<term>Trabecular bone</term>
<term>Variance</term>
<term>Wolke</term>
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<keywords scheme="Teeft" xml:lang="en"><term>Albrektsson</term>
<term>Alveolar bone</term>
<term>Alveolar ridge</term>
<term>Anova</term>
<term>Apical</term>
<term>Apposition</term>
<term>Biomedical</term>
<term>Biomedical materials research</term>
<term>Bone apposition</term>
<term>Bone contact</term>
<term>Bone data</term>
<term>Bone formation</term>
<term>Bone reaction</term>
<term>Bone response</term>
<term>Borisov</term>
<term>Clin</term>
<term>Clinical periodontology</term>
<term>Coating degradation</term>
<term>Coating thickness</term>
<term>Coronal</term>
<term>Coronal half</term>
<term>Crestal</term>
<term>Degradation</term>
<term>Dense bone</term>
<term>Dental implants</term>
<term>Different implant groups</term>
<term>Distinct areas</term>
<term>Eighth thread</term>
<term>Entire length</term>
<term>Experimental study</term>
<term>Functional load</term>
<term>Functional loading</term>
<term>Hacam</term>
<term>Healing period</term>
<term>Histological</term>
<term>Histomorphometrical evaluation</term>
<term>Hydroxylapatite</term>
<term>Hydroxylapatite coatings</term>
<term>Impl</term>
<term>Implant</term>
<term>Implant surface</term>
<term>Implant surfaces</term>
<term>Implant thread</term>
<term>Implants research</term>
<term>International journal</term>
<term>Jansen</term>
<term>John wiley sons</term>
<term>Junker</term>
<term>Loading</term>
<term>Loading condition</term>
<term>Loading conditions</term>
<term>Mandible</term>
<term>Mandibular</term>
<term>Microplasma</term>
<term>Microplasma spraying</term>
<term>Nemark</term>
<term>Noncoated</term>
<term>Noncoated implants</term>
<term>Occlusal</term>
<term>Occlusal load</term>
<term>Occlusal loading</term>
<term>Oral impl</term>
<term>Oral implants</term>
<term>Oral maxillofacial implants</term>
<term>Other studies</term>
<term>Periodontology</term>
<term>Present study</term>
<term>Resorption</term>
<term>Statistical analysis</term>
<term>Study design</term>
<term>Titanium</term>
<term>Titanium implants</term>
<term>Trabecular bone</term>
<term>Variance</term>
<term>Wolke</term>
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<front><div type="abstract">Background: A new microplasma spraying equipment (MSE) to deposit calcium phosphate ceramic (CaP) coatings onto titanium substrates has been developed. With this system, it is possible to spray fine particles and to apply textured hydroxylapatite coatings onto titanium surfaces. Moreover, due to the low heat power of the microplasma jet, overheating of the powder particles as well as excessive local overheating of the substrate is diminished. Furthermore, because of the small laminar plasma jet, it is possible to achieve high spray efficiency in the case of spraying for dental implants. Also, the low level of noise (25–50 dB) and hardly any dust makes it possible to operate MSE under conditions of normal workrooms.</div>
</front>
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