Primary Stability of a Hybrid Self‐Tapping Implant Compared to a Cylindrical Non‐Self‐Tapping Implant with Respect to Drilling Protocols in an Ex Vivo Model
Identifieur interne : 004570 ( Main/Exploration ); précédent : 004569; suivant : 004571Primary Stability of a Hybrid Self‐Tapping Implant Compared to a Cylindrical Non‐Self‐Tapping Implant with Respect to Drilling Protocols in an Ex Vivo Model
Auteurs : Takeshi Toyoshima [Japon] ; Wilfried Wagner [Allemagne] ; Marcus Oliver Klein [Allemagne] ; Elmar Stender [Allemagne] ; Marco Wieland [Suisse] ; Bilal Al-Nawas [Allemagne]Source :
- Clinical Implant Dentistry and Related Research [ 1523-0899 ] ; 2011-03.
Descripteurs français
- Wicri :
- topic : Forage.
English descriptors
- KwdEn :
- Anova, Bone level implant, Cancellous, Cancellous bone, Clin, Clin implant dent relat, Clinical implant dentistry, Clinical study, Compressive forces, Conical implant, Cortical bone, Critical bone quality, Cylindrical implant, Dent, Dental implant, Dental implants, Dentistry, Drilling, Drilling groups, Drilling protocol, Drilling protocols, Factorial, Factorial anova, Human cadaver study, Hybrid, Hybrid implant, Hybrid implants, Implant, Implant design, Implant stability, Insertion, Insertion torque, Johannes gutenberg university mainz, Mainz, Maxillofac, Maxillofacial surgery, Maximum insertion torque, Medical dentistry, Oral maxillofac implants, Oral maxillofac surg, Periotest, Periotest values, Primary stability, Relat, Resonance frequency analysis, Resonance frequency measurements, Sennerby, Standard drilling, Standard drilling drilling, Standard drilling protocol, Straumann, Tapered effect implant, Underdimensioned drilling, Vivo model.
- Teeft :
- Anova, Bone level implant, Cancellous, Cancellous bone, Clin, Clin implant dent relat, Clinical implant dentistry, Clinical study, Compressive forces, Conical implant, Cortical bone, Critical bone quality, Cylindrical implant, Dent, Dental implant, Dental implants, Dentistry, Drilling, Drilling groups, Drilling protocol, Drilling protocols, Factorial, Factorial anova, Human cadaver study, Hybrid, Hybrid implant, Hybrid implants, Implant, Implant design, Implant stability, Insertion, Insertion torque, Johannes gutenberg university mainz, Mainz, Maxillofac, Maxillofacial surgery, Maximum insertion torque, Medical dentistry, Oral maxillofac implants, Oral maxillofac surg, Periotest, Periotest values, Primary stability, Relat, Resonance frequency analysis, Resonance frequency measurements, Sennerby, Standard drilling, Standard drilling drilling, Standard drilling protocol, Straumann, Tapered effect implant, Underdimensioned drilling, Vivo model.
Abstract
Background: Modifications of implant design have been intending to improve primary stability. However, little is known about investigation of a hybrid self‐tapping implant on primary stability.
Url:
DOI: 10.1111/j.1708-8208.2009.00185.x
Affiliations:
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Le document en format XML
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<term>Clin</term>
<term>Clin implant dent relat</term>
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<term>Drilling protocols</term>
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<term>Factorial anova</term>
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<term>Hybrid implant</term>
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<term>Implant stability</term>
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<term>Maxillofac</term>
<term>Maxillofacial surgery</term>
<term>Maximum insertion torque</term>
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<term>Mainz</term>
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<term>Maxillofacial surgery</term>
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<term>Oral maxillofac implants</term>
<term>Oral maxillofac surg</term>
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<term>Periotest values</term>
<term>Primary stability</term>
<term>Relat</term>
<term>Resonance frequency analysis</term>
<term>Resonance frequency measurements</term>
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<front><div type="abstract">Background: Modifications of implant design have been intending to improve primary stability. However, little is known about investigation of a hybrid self‐tapping implant on primary stability.</div>
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