Evaluation of the safety and efficiency of novel metallic ultrasonic scaler tip on titanium surfaces
Identifieur interne : 003B17 ( Main/Exploration ); précédent : 003B16; suivant : 003B18Evaluation of the safety and efficiency of novel metallic ultrasonic scaler tip on titanium surfaces
Auteurs : Seung-Ho Baek [Corée du Sud] ; Won-Jun Shon [Corée du Sud] ; Kwang-Shik Bae [Corée du Sud] ; Kee-Yeon Kum [Corée du Sud] ; Woo-Cheol Lee [Corée du Sud] ; Young-Seok Park [Corée du Sud]Source :
- Clinical Oral Implants Research [ 0905-7161 ] ; 2012-11.
Descripteurs français
- Wicri :
- topic : Titane.
English descriptors
- KwdEn :
- Antimicrobial therapy, Average rate, Bacterial colonization, Baek, Baek shon, Cantilever, Chemical composition, Clinical periodontology, Colonization, Contact mode, Copper alloy, Dental implants, Dental research institute, Elastic modulus, Force microscope, Full power, Gildenhuys stallard, Hardness, Hardness value, Higher surface roughness, Implant, Implant maintenance therapy, Implant surfaces, Implants research, Instrumented surface, Instrumented surface morphology, International journal, John wiley sons, John wiley sons baek, Lang, Little scratch, Local administration, Maintenance therapy, Maxillofacial implants, Maximum height roughness, Mechanical debridement, Mechanical instrumentation, Mechanical properties, Metallic implant, Minimal damage, Mombelli, Oral impl, Other words, Park evaluation, Periodontology, Plaque, Plaque accumulation, Plastic tips, Positive correlation, Power ratio, Quirynen, Resonance frequency, Roughness, Scaler, Scaler tips, Scanning electron microscope, Seoul, Statistical analysis, Suitable instrument, Surface roughness, Threshold value, Titanium, Titanium disks, Titanium samples, Titanium surface, Titanium surfaces, Ultrasonic scaler, Ultrasonic scaler tips, Ultrasonic scalers, Various scaler tips, Vivo study.
- Teeft :
- Antimicrobial therapy, Average rate, Bacterial colonization, Baek, Baek shon, Cantilever, Chemical composition, Clinical periodontology, Colonization, Contact mode, Copper alloy, Dental implants, Dental research institute, Elastic modulus, Force microscope, Full power, Gildenhuys stallard, Hardness, Hardness value, Higher surface roughness, Implant, Implant maintenance therapy, Implant surfaces, Implants research, Instrumented surface, Instrumented surface morphology, International journal, John wiley sons, John wiley sons baek, Lang, Little scratch, Local administration, Maintenance therapy, Maxillofacial implants, Maximum height roughness, Mechanical debridement, Mechanical instrumentation, Mechanical properties, Metallic implant, Minimal damage, Mombelli, Oral impl, Other words, Park evaluation, Periodontology, Plaque, Plaque accumulation, Plastic tips, Positive correlation, Power ratio, Quirynen, Resonance frequency, Roughness, Scaler, Scaler tips, Scanning electron microscope, Seoul, Statistical analysis, Suitable instrument, Surface roughness, Threshold value, Titanium, Titanium disks, Titanium samples, Titanium surface, Titanium surfaces, Ultrasonic scaler, Ultrasonic scaler tips, Ultrasonic scalers, Various scaler tips, Vivo study.
Abstract
To evaluate the safety and efficiency of novel ultrasonic scaler tips, conventional stainless‐steel tips, and plastic tips on titanium surfaces.
Url:
DOI: 10.1111/j.1600-0501.2011.02302.x
Affiliations:
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Le document en format XML
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<term>Cantilever</term>
<term>Chemical composition</term>
<term>Clinical periodontology</term>
<term>Colonization</term>
<term>Contact mode</term>
<term>Copper alloy</term>
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<term>Dental research institute</term>
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<term>Force microscope</term>
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<term>Titanium samples</term>
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<term>Titanium surfaces</term>
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<term>Ultrasonic scaler tips</term>
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<term>Bacterial colonization</term>
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<term>Baek shon</term>
<term>Cantilever</term>
<term>Chemical composition</term>
<term>Clinical periodontology</term>
<term>Colonization</term>
<term>Contact mode</term>
<term>Copper alloy</term>
<term>Dental implants</term>
<term>Dental research institute</term>
<term>Elastic modulus</term>
<term>Force microscope</term>
<term>Full power</term>
<term>Gildenhuys stallard</term>
<term>Hardness</term>
<term>Hardness value</term>
<term>Higher surface roughness</term>
<term>Implant</term>
<term>Implant maintenance therapy</term>
<term>Implant surfaces</term>
<term>Implants research</term>
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<term>Maximum height roughness</term>
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<term>Power ratio</term>
<term>Quirynen</term>
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<term>Roughness</term>
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<term>Scaler tips</term>
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<term>Suitable instrument</term>
<term>Surface roughness</term>
<term>Threshold value</term>
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<front><div type="abstract">To evaluate the safety and efficiency of novel ultrasonic scaler tips, conventional stainless‐steel tips, and plastic tips on titanium surfaces.</div>
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