Direct High‐Frequency Stimulation of Peri‐Implant Rabbit Bone: A Pilot Study
Identifieur interne : 003B79 ( Main/Curation ); précédent : 003B78; suivant : 003B80Direct High‐Frequency Stimulation of Peri‐Implant Rabbit Bone: A Pilot Study
Auteurs : Xiaolei Zhang [Belgique] ; Ignace Naert [Belgique] ; Dorien Van Schoonhoven [Belgique] ; Joke Duyck [Belgique]Source :
- Clinical Implant Dentistry and Related Research [ 1523-0899 ] ; 2012-08.
Descripteurs français
- Wicri :
- topic : Titane.
English descriptors
- KwdEn :
- Animal study, Appl physiol, Biomat research cluster, Biomechanical, Biomed mater, Bone adaptation, Bone density, Bone formation, Bone fraction, Bone healing, Bone response, Bone tissue, Clin, Clin periodontol, Clinical implant dentistry, Control groups, Dentistry, Direct vibration, Duyck, Dynamic loading, Healing, Healing bone, Healing process, Higher bone fraction, Immediate loading, Immediate vicinity, Implant, Implant healing, Implant installation, Implant loading, Implant osseointegration, Implant surface, Interfacial micromotion, Joke duyck, Katholieke universiteit leuven, Loading, Loading conditions, Loading protocol, Mature bone, Maxillofacial surgery, Mechanical loading, Mechanical signals, Mechanical stimulation, Mechanical stimuli, Optimal biomechanical, Oral implantol, Oral implants, Oral maxillofac implants, Oral pathology, Osseointegration, Osseointegration process, Osteogenic, Osteogenic effect, Ovariectomized rats, Pilot study, Positive effect, Prosthetic dentistry, Strain rate, Tissue differentiation, Tissue healing, Titanium, Titanium implants, Vander sloten, Vibration device, Vibration stimulation.
- Teeft :
- Animal study, Appl physiol, Biomat research cluster, Biomechanical, Biomed mater, Bone adaptation, Bone density, Bone formation, Bone fraction, Bone healing, Bone response, Bone tissue, Clin, Clin periodontol, Clinical implant dentistry, Control groups, Dentistry, Direct vibration, Duyck, Dynamic loading, Healing, Healing bone, Healing process, Higher bone fraction, Immediate loading, Immediate vicinity, Implant, Implant healing, Implant installation, Implant loading, Implant osseointegration, Implant surface, Interfacial micromotion, Joke duyck, Katholieke universiteit leuven, Loading, Loading conditions, Loading protocol, Mature bone, Maxillofacial surgery, Mechanical loading, Mechanical signals, Mechanical stimulation, Mechanical stimuli, Optimal biomechanical, Oral implantol, Oral implants, Oral maxillofac implants, Oral pathology, Osseointegration, Osseointegration process, Osteogenic, Osteogenic effect, Ovariectomized rats, Pilot study, Positive effect, Prosthetic dentistry, Strain rate, Tissue differentiation, Tissue healing, Titanium, Titanium implants, Vander sloten, Vibration device, Vibration stimulation.
Abstract
Objective: This study aimed to evaluate the effect of direct high‐frequency mechanical stimulation on the peri‐implant tissue healing.
Url:
DOI: 10.1111/j.1708-8208.2010.00298.x
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ISTEX:1212964B138FBE6A5EE5AFDD2DB0795C7DF99FE7Le document en format XML
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<profileDesc><textClass><keywords scheme="KwdEn" xml:lang="en"><term>Animal study</term>
<term>Appl physiol</term>
<term>Biomat research cluster</term>
<term>Biomechanical</term>
<term>Biomed mater</term>
<term>Bone adaptation</term>
<term>Bone density</term>
<term>Bone formation</term>
<term>Bone fraction</term>
<term>Bone healing</term>
<term>Bone response</term>
<term>Bone tissue</term>
<term>Clin</term>
<term>Clin periodontol</term>
<term>Clinical implant dentistry</term>
<term>Control groups</term>
<term>Dentistry</term>
<term>Direct vibration</term>
<term>Duyck</term>
<term>Dynamic loading</term>
<term>Healing</term>
<term>Healing bone</term>
<term>Healing process</term>
<term>Higher bone fraction</term>
<term>Immediate loading</term>
<term>Immediate vicinity</term>
<term>Implant</term>
<term>Implant healing</term>
<term>Implant installation</term>
<term>Implant loading</term>
<term>Implant osseointegration</term>
<term>Implant surface</term>
<term>Interfacial micromotion</term>
<term>Joke duyck</term>
<term>Katholieke universiteit leuven</term>
<term>Loading</term>
<term>Loading conditions</term>
<term>Loading protocol</term>
<term>Mature bone</term>
<term>Maxillofacial surgery</term>
<term>Mechanical loading</term>
<term>Mechanical signals</term>
<term>Mechanical stimulation</term>
<term>Mechanical stimuli</term>
<term>Optimal biomechanical</term>
<term>Oral implantol</term>
<term>Oral implants</term>
<term>Oral maxillofac implants</term>
<term>Oral pathology</term>
<term>Osseointegration</term>
<term>Osseointegration process</term>
<term>Osteogenic</term>
<term>Osteogenic effect</term>
<term>Ovariectomized rats</term>
<term>Pilot study</term>
<term>Positive effect</term>
<term>Prosthetic dentistry</term>
<term>Strain rate</term>
<term>Tissue differentiation</term>
<term>Tissue healing</term>
<term>Titanium</term>
<term>Titanium implants</term>
<term>Vander sloten</term>
<term>Vibration device</term>
<term>Vibration stimulation</term>
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<term>Appl physiol</term>
<term>Biomat research cluster</term>
<term>Biomechanical</term>
<term>Biomed mater</term>
<term>Bone adaptation</term>
<term>Bone density</term>
<term>Bone formation</term>
<term>Bone fraction</term>
<term>Bone healing</term>
<term>Bone response</term>
<term>Bone tissue</term>
<term>Clin</term>
<term>Clin periodontol</term>
<term>Clinical implant dentistry</term>
<term>Control groups</term>
<term>Dentistry</term>
<term>Direct vibration</term>
<term>Duyck</term>
<term>Dynamic loading</term>
<term>Healing</term>
<term>Healing bone</term>
<term>Healing process</term>
<term>Higher bone fraction</term>
<term>Immediate loading</term>
<term>Immediate vicinity</term>
<term>Implant</term>
<term>Implant healing</term>
<term>Implant installation</term>
<term>Implant loading</term>
<term>Implant osseointegration</term>
<term>Implant surface</term>
<term>Interfacial micromotion</term>
<term>Joke duyck</term>
<term>Katholieke universiteit leuven</term>
<term>Loading</term>
<term>Loading conditions</term>
<term>Loading protocol</term>
<term>Mature bone</term>
<term>Maxillofacial surgery</term>
<term>Mechanical loading</term>
<term>Mechanical signals</term>
<term>Mechanical stimulation</term>
<term>Mechanical stimuli</term>
<term>Optimal biomechanical</term>
<term>Oral implantol</term>
<term>Oral implants</term>
<term>Oral maxillofac implants</term>
<term>Oral pathology</term>
<term>Osseointegration</term>
<term>Osseointegration process</term>
<term>Osteogenic</term>
<term>Osteogenic effect</term>
<term>Ovariectomized rats</term>
<term>Pilot study</term>
<term>Positive effect</term>
<term>Prosthetic dentistry</term>
<term>Strain rate</term>
<term>Tissue differentiation</term>
<term>Tissue healing</term>
<term>Titanium</term>
<term>Titanium implants</term>
<term>Vander sloten</term>
<term>Vibration device</term>
<term>Vibration stimulation</term>
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<front><div type="abstract">Objective: This study aimed to evaluate the effect of direct high‐frequency mechanical stimulation on the peri‐implant tissue healing.</div>
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