Vertical Bone Augmentation with Simultaneous Dental Implantation Using Crestal Biomaterial Rings: A Rabbit Animal Study
Identifieur interne : 003585 ( Main/Exploration ); précédent : 003584; suivant : 003586Vertical Bone Augmentation with Simultaneous Dental Implantation Using Crestal Biomaterial Rings: A Rabbit Animal Study
Auteurs : Florian G. Draenert [Allemagne] ; Peer W. K Mmerer ; Victor Palarie ; Wilfried Wagner [Allemagne]Source :
- Clinical Implant Dentistry and Related Research [ 1523-0899 ] ; 2012-05.
English descriptors
- KwdEn :
- Alfa gate, Animal study, Augmentation, Biological scaffold, Biological scaffolds, Biomaterial, Biomaterial rings, Biphasic implant, Bone augmentation, Bone cylinders, Bone grafts, Bone matrix, Bone regeneration, Bony healing, Calcium phosphate coating, Cancellous, Cancellous bone, Cancellous bone material, Cancellous structure, Chinchilla bastard rabbits, Clin, Clin implant dent relat, Clin periodontol, Clinical implant dentistry, Clinical trial, Craniomaxillofac surg, Cylindrical autologous bone grafts, Dental implant, Dental implant placement, Dental implantology, Distraction osteogenesis, Donor site morbidity, Draenert, Endosseous implants, Graft, Hager meisinger, Histological, Histological examination, Histological example, Histological results, Implant, Implant placement, Interconnecting pores, Marginal bone triangle, Material block, Matrix, Oral maxillofac implants, Oral maxillofac surg, Oral maxillofacial surgery, Oral pathol, Osteosynthesis screws, Rabbit tibia model, Retrospective study, Simultaneous implantation, Standard deviation, Surg, Tibia, Tibia model, Tissue regeneration, Titanium mesh, Transcrestal sinus, Vertical augmentation, Vertical bone augmentation, Vertical ridge augmentation.
- Teeft :
- Alfa gate, Animal study, Augmentation, Biological scaffold, Biological scaffolds, Biomaterial, Biomaterial rings, Biphasic implant, Bone augmentation, Bone cylinders, Bone grafts, Bone matrix, Bone regeneration, Bony healing, Calcium phosphate coating, Cancellous, Cancellous bone, Cancellous bone material, Cancellous structure, Chinchilla bastard rabbits, Clin, Clin implant dent relat, Clin periodontol, Clinical implant dentistry, Clinical trial, Craniomaxillofac surg, Cylindrical autologous bone grafts, Dental implant, Dental implant placement, Dental implantology, Distraction osteogenesis, Donor site morbidity, Draenert, Endosseous implants, Graft, Hager meisinger, Histological, Histological examination, Histological example, Histological results, Implant, Implant placement, Interconnecting pores, Marginal bone triangle, Material block, Matrix, Oral maxillofac implants, Oral maxillofac surg, Oral maxillofacial surgery, Oral pathol, Osteosynthesis screws, Rabbit tibia model, Retrospective study, Simultaneous implantation, Standard deviation, Surg, Tibia, Tibia model, Tissue regeneration, Titanium mesh, Transcrestal sinus, Vertical augmentation, Vertical bone augmentation, Vertical ridge augmentation.
Abstract
Background: Ceramic biomaterial blocks like hydroxyl apatite are too brittle for simple simultaneous vertical augmentation and dental implant placement. Biological scaffolds of xenogenic or allogenic origin are known to be advantageous.
Url:
DOI: 10.1111/j.1708-8208.2011.00401.x
Affiliations:
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Le document en format XML
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<term>Augmentation</term>
<term>Biological scaffold</term>
<term>Biological scaffolds</term>
<term>Biomaterial</term>
<term>Biomaterial rings</term>
<term>Biphasic implant</term>
<term>Bone augmentation</term>
<term>Bone cylinders</term>
<term>Bone grafts</term>
<term>Bone matrix</term>
<term>Bone regeneration</term>
<term>Bony healing</term>
<term>Calcium phosphate coating</term>
<term>Cancellous</term>
<term>Cancellous bone</term>
<term>Cancellous bone material</term>
<term>Cancellous structure</term>
<term>Chinchilla bastard rabbits</term>
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<term>Clinical trial</term>
<term>Craniomaxillofac surg</term>
<term>Cylindrical autologous bone grafts</term>
<term>Dental implant</term>
<term>Dental implant placement</term>
<term>Dental implantology</term>
<term>Distraction osteogenesis</term>
<term>Donor site morbidity</term>
<term>Draenert</term>
<term>Endosseous implants</term>
<term>Graft</term>
<term>Hager meisinger</term>
<term>Histological</term>
<term>Histological examination</term>
<term>Histological example</term>
<term>Histological results</term>
<term>Implant</term>
<term>Implant placement</term>
<term>Interconnecting pores</term>
<term>Marginal bone triangle</term>
<term>Material block</term>
<term>Matrix</term>
<term>Oral maxillofac implants</term>
<term>Oral maxillofac surg</term>
<term>Oral maxillofacial surgery</term>
<term>Oral pathol</term>
<term>Osteosynthesis screws</term>
<term>Rabbit tibia model</term>
<term>Retrospective study</term>
<term>Simultaneous implantation</term>
<term>Standard deviation</term>
<term>Surg</term>
<term>Tibia</term>
<term>Tibia model</term>
<term>Tissue regeneration</term>
<term>Titanium mesh</term>
<term>Transcrestal sinus</term>
<term>Vertical augmentation</term>
<term>Vertical bone augmentation</term>
<term>Vertical ridge augmentation</term>
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<term>Animal study</term>
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<term>Biological scaffold</term>
<term>Biological scaffolds</term>
<term>Biomaterial</term>
<term>Biomaterial rings</term>
<term>Biphasic implant</term>
<term>Bone augmentation</term>
<term>Bone cylinders</term>
<term>Bone grafts</term>
<term>Bone matrix</term>
<term>Bone regeneration</term>
<term>Bony healing</term>
<term>Calcium phosphate coating</term>
<term>Cancellous</term>
<term>Cancellous bone</term>
<term>Cancellous bone material</term>
<term>Cancellous structure</term>
<term>Chinchilla bastard rabbits</term>
<term>Clin</term>
<term>Clin implant dent relat</term>
<term>Clin periodontol</term>
<term>Clinical implant dentistry</term>
<term>Clinical trial</term>
<term>Craniomaxillofac surg</term>
<term>Cylindrical autologous bone grafts</term>
<term>Dental implant</term>
<term>Dental implant placement</term>
<term>Dental implantology</term>
<term>Distraction osteogenesis</term>
<term>Donor site morbidity</term>
<term>Draenert</term>
<term>Endosseous implants</term>
<term>Graft</term>
<term>Hager meisinger</term>
<term>Histological</term>
<term>Histological examination</term>
<term>Histological example</term>
<term>Histological results</term>
<term>Implant</term>
<term>Implant placement</term>
<term>Interconnecting pores</term>
<term>Marginal bone triangle</term>
<term>Material block</term>
<term>Matrix</term>
<term>Oral maxillofac implants</term>
<term>Oral maxillofac surg</term>
<term>Oral maxillofacial surgery</term>
<term>Oral pathol</term>
<term>Osteosynthesis screws</term>
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<term>Standard deviation</term>
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<term>Tibia</term>
<term>Tibia model</term>
<term>Tissue regeneration</term>
<term>Titanium mesh</term>
<term>Transcrestal sinus</term>
<term>Vertical augmentation</term>
<term>Vertical bone augmentation</term>
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<front><div type="abstract">Background: Ceramic biomaterial blocks like hydroxyl apatite are too brittle for simple simultaneous vertical augmentation and dental implant placement. Biological scaffolds of xenogenic or allogenic origin are known to be advantageous.</div>
</front>
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<affiliations><list><country><li>Allemagne</li>
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<tree><noCountry><name sortKey="K Mmerer, Peer W" sort="K Mmerer, Peer W" uniqKey="K Mmerer P" first="Peer W." last="K Mmerer">Peer W. K Mmerer</name>
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<country name="Allemagne"><region name="Rhénanie-Palatinat"><name sortKey="Draenert, Florian G" sort="Draenert, Florian G" uniqKey="Draenert F" first="Florian G." last="Draenert">Florian G. Draenert</name>
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