Cortical porosity of the mandible in an osteoporotic sheep model
Identifieur interne : 002078 ( Istex/Curation ); précédent : 002077; suivant : 002079Cortical porosity of the mandible in an osteoporotic sheep model
Auteurs : Gabriella Dvorak [Autriche] ; Karoline M. Reich [Autriche] ; Stefan Tangl [Autriche] ; Jörg Goldhahn [Suisse] ; Robert Haas [Autriche] ; Reinhard Gruber [Autriche]Source :
- Clinical Oral Implants Research [ 0905-7161 ] ; 2011-05.
English descriptors
- KwdEn :
- Adult controls, Alveolar process, Appendicular skeleton, Bone turnover, Canal, Canal area, Catabolic, Catabolic changes, Control group, Controls data, Cortical, Cortical bone, Cortical porosity, Cortical thickness, Dental implants, Dentomaxillofacial radiology, Diastema, Dvorak, Endocortical area, Fracture treatment, Geriatric, Geriatric osteoporotic sheep, Glucocorticoid, Glucocorticoid application, Goldhahn, Gruber, Histomorphometry, Implant, Implant stability, Inner millimeter, Jawbone, John wiley sons, Lill, Mandible, Mandibular, Mandibular bone, Ndings, Oral impl, Osteoporosis, Osteoporotic, Osteoporotic conditions, Osteoporotic group, Osteoporotic sheep, Osteoporotic sheep model, Ovariectomized sheep, Ovariectomy, Percent increase, Porosity, Postmolar, Postmolar region, Premolar, Premolar region, Present study, Second premolar, Second premolar region, Sheep model, Test group, Whole region.
- Teeft :
- Adult controls, Alveolar process, Appendicular skeleton, Bone turnover, Canal, Canal area, Catabolic, Catabolic changes, Control group, Controls data, Cortical, Cortical bone, Cortical porosity, Cortical thickness, Dental implants, Dentomaxillofacial radiology, Diastema, Dvorak, Endocortical area, Fracture treatment, Geriatric, Geriatric osteoporotic sheep, Glucocorticoid, Glucocorticoid application, Goldhahn, Gruber, Histomorphometry, Implant, Implant stability, Inner millimeter, Jawbone, John wiley sons, Lill, Mandible, Mandibular, Mandibular bone, Ndings, Oral impl, Osteoporosis, Osteoporotic, Osteoporotic conditions, Osteoporotic group, Osteoporotic sheep, Osteoporotic sheep model, Ovariectomized sheep, Ovariectomy, Percent increase, Porosity, Postmolar, Postmolar region, Premolar, Premolar region, Present study, Second premolar, Second premolar region, Sheep model, Test group, Whole region.
Abstract
Objectives: Cortical porosity and thickness of the axial and the appendicular skeleton are predictors of osteoporotic fractures. In the jawbone, however, cortical porosity and thickness may affect the mechanical stability of dental implants. We have shown previously that the jawbone of osteoporotic sheep has impaired trabecular structures, but whether catabolic bone turnover also accounts for the cortical bone porosity remains unknown.
Url:
DOI: 10.1111/j.1600-0501.2010.02031.x
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<profileDesc><textClass><keywords scheme="KwdEn" xml:lang="en"><term>Adult controls</term>
<term>Alveolar process</term>
<term>Appendicular skeleton</term>
<term>Bone turnover</term>
<term>Canal</term>
<term>Canal area</term>
<term>Catabolic</term>
<term>Catabolic changes</term>
<term>Control group</term>
<term>Controls data</term>
<term>Cortical</term>
<term>Cortical bone</term>
<term>Cortical porosity</term>
<term>Cortical thickness</term>
<term>Dental implants</term>
<term>Dentomaxillofacial radiology</term>
<term>Diastema</term>
<term>Dvorak</term>
<term>Endocortical area</term>
<term>Fracture treatment</term>
<term>Geriatric</term>
<term>Geriatric osteoporotic sheep</term>
<term>Glucocorticoid</term>
<term>Glucocorticoid application</term>
<term>Goldhahn</term>
<term>Gruber</term>
<term>Histomorphometry</term>
<term>Implant</term>
<term>Implant stability</term>
<term>Inner millimeter</term>
<term>Jawbone</term>
<term>John wiley sons</term>
<term>Lill</term>
<term>Mandible</term>
<term>Mandibular</term>
<term>Mandibular bone</term>
<term>Ndings</term>
<term>Oral impl</term>
<term>Osteoporosis</term>
<term>Osteoporotic</term>
<term>Osteoporotic conditions</term>
<term>Osteoporotic group</term>
<term>Osteoporotic sheep</term>
<term>Osteoporotic sheep model</term>
<term>Ovariectomized sheep</term>
<term>Ovariectomy</term>
<term>Percent increase</term>
<term>Porosity</term>
<term>Postmolar</term>
<term>Postmolar region</term>
<term>Premolar</term>
<term>Premolar region</term>
<term>Present study</term>
<term>Second premolar</term>
<term>Second premolar region</term>
<term>Sheep model</term>
<term>Test group</term>
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<term>Alveolar process</term>
<term>Appendicular skeleton</term>
<term>Bone turnover</term>
<term>Canal</term>
<term>Canal area</term>
<term>Catabolic</term>
<term>Catabolic changes</term>
<term>Control group</term>
<term>Controls data</term>
<term>Cortical</term>
<term>Cortical bone</term>
<term>Cortical porosity</term>
<term>Cortical thickness</term>
<term>Dental implants</term>
<term>Dentomaxillofacial radiology</term>
<term>Diastema</term>
<term>Dvorak</term>
<term>Endocortical area</term>
<term>Fracture treatment</term>
<term>Geriatric</term>
<term>Geriatric osteoporotic sheep</term>
<term>Glucocorticoid</term>
<term>Glucocorticoid application</term>
<term>Goldhahn</term>
<term>Gruber</term>
<term>Histomorphometry</term>
<term>Implant</term>
<term>Implant stability</term>
<term>Inner millimeter</term>
<term>Jawbone</term>
<term>John wiley sons</term>
<term>Lill</term>
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<term>Ndings</term>
<term>Oral impl</term>
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<term>Postmolar</term>
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<term>Premolar</term>
<term>Premolar region</term>
<term>Present study</term>
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<front><div type="abstract">Objectives: Cortical porosity and thickness of the axial and the appendicular skeleton are predictors of osteoporotic fractures. In the jawbone, however, cortical porosity and thickness may affect the mechanical stability of dental implants. We have shown previously that the jawbone of osteoporotic sheep has impaired trabecular structures, but whether catabolic bone turnover also accounts for the cortical bone porosity remains unknown.</div>
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