Effect of Implant Angulation, Connection Length, and Impression Material on the Dimensional Accuracy of Implant Impressions: An In Vitro Comparative Study
Identifieur interne : 005372 ( Main/Merge ); précédent : 005371; suivant : 005373Effect of Implant Angulation, Connection Length, and Impression Material on the Dimensional Accuracy of Implant Impressions: An In Vitro Comparative Study
Auteurs : Roberto Sorrentino [Italie] ; Enrico Felice Gherlone [Italie] ; Gaetano Calesini [Italie] ; Fernando Zarone [Italie]Source :
- Clinical Implant Dentistry and Related Research [ 1523-0899 ] ; 2010-05.
English descriptors
- KwdEn :
- Absolute control values, Absolute distortion, Abutment, Addition silicon, Addition silicons, Analogue, Angulated implants, Angulation, Cause strains, Clinical implant dentistry, Clinical practice, Connection length, Connection part, Control groups, Control models, Coping, Custom trays, Data distribution, Dent, Dental stone, Dentistry, Different impression materials, Different lengths, Dimensional accuracy, Edentulous, Edentulous plane, Edentulous ridge, Effects source, Effects source type, Elastomeric impression materials, Electric discharge machining, Experimental groups, Experimental models, Fernando zarone, Higher forces, Implant, Implant analogue, Implant analogues, Implant angulation, Implant dent, Implant impression techniques, Implant impressions, Implant placement, Implant prosthodontics, Important role, Impression accuracy, Impression carrier, Impression copings, Impression material, Impression materials, Impression procedures, Impression removal, Impression technique, Impression techniques, Impression tray, Impression trays, Interest statement, Internal connection, Intraoperator error variability, Intraoral, Intraoral position, Jemt, Laboratory investigation, Laboratory procedures, Longitudinal axes, Master cast accuracy, Master model, Master models, Material accuracy, Maxillary crest, Maxillofac, Measurements tests, Mechanical properties, Mesial, Mesial aspect, Minor movements, Model intercept material angulation, Nicholls, Nonparallel, Nonparallel implants, Null hypotheses, Numerical control machine, Oral maxillofac implants, Oral rehabil, Osseointegrated, Osseointegrated implants, Parallel implants, Pattern resin, Present investigation, Present study, Prosthesis, Prosthet, Prosthet dent, Prosthetic, Prosthodont, Prosthodontics, Reference points, Relative distortion, Relative humidity, Removal forces, Repeatable position, Right impression copings, Same height, Same time, Second molars, Second premolars, Silicon, Silicon indexes, Stainless steel, Stainless steel quadrangular plate, Standard deviations, Standard length connection, Statistical analysis, Stock trays, Subgingival depth, Testing device, Testing machine, Titanium frameworks, Transfer impressions, Winsix implant system, Zhermack.
- Teeft :
- Absolute control values, Absolute distortion, Abutment, Addition silicon, Addition silicons, Analogue, Angulated implants, Angulation, Cause strains, Clinical implant dentistry, Clinical practice, Connection length, Connection part, Control groups, Control models, Coping, Custom trays, Data distribution, Dent, Dental stone, Dentistry, Different impression materials, Different lengths, Dimensional accuracy, Edentulous, Edentulous plane, Edentulous ridge, Effects source, Effects source type, Elastomeric impression materials, Electric discharge machining, Experimental groups, Experimental models, Fernando zarone, Higher forces, Implant, Implant analogue, Implant analogues, Implant angulation, Implant dent, Implant impression techniques, Implant impressions, Implant placement, Implant prosthodontics, Important role, Impression accuracy, Impression carrier, Impression copings, Impression material, Impression materials, Impression procedures, Impression removal, Impression technique, Impression techniques, Impression tray, Impression trays, Interest statement, Internal connection, Intraoperator error variability, Intraoral, Intraoral position, Jemt, Laboratory investigation, Laboratory procedures, Longitudinal axes, Master cast accuracy, Master model, Master models, Material accuracy, Maxillary crest, Maxillofac, Measurements tests, Mechanical properties, Mesial, Mesial aspect, Minor movements, Model intercept material angulation, Nicholls, Nonparallel, Nonparallel implants, Null hypotheses, Numerical control machine, Oral maxillofac implants, Oral rehabil, Osseointegrated, Osseointegrated implants, Parallel implants, Pattern resin, Present investigation, Present study, Prosthesis, Prosthet, Prosthet dent, Prosthetic, Prosthodont, Prosthodontics, Reference points, Relative distortion, Relative humidity, Removal forces, Repeatable position, Right impression copings, Same height, Same time, Second molars, Second premolars, Silicon, Silicon indexes, Stainless steel, Stainless steel quadrangular plate, Standard deviations, Standard length connection, Statistical analysis, Stock trays, Subgingival depth, Testing device, Testing machine, Titanium frameworks, Transfer impressions, Winsix implant system, Zhermack.
Abstract
Background: With regard to implant‐supported prostheses, to date no technique has been proven to guarantee a completely passive fit of prosthetic frameworks. Several clinical variables may affect the precision of impressions, particularly in the presence of implants.
Url:
DOI: 10.1111/j.1708-8208.2009.00167.x
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ISTEX:190E96DE7AA64C2BA5B0A364D3F7AC0066D157BELe document en format XML
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<author><name sortKey="Calesini, Gaetano" sort="Calesini, Gaetano" uniqKey="Calesini G" first="Gaetano" last="Calesini">Gaetano Calesini</name>
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<series><title level="j" type="main">Clinical Implant Dentistry and Related Research</title>
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<profileDesc><textClass><keywords scheme="KwdEn" xml:lang="en"><term>Absolute control values</term>
<term>Absolute distortion</term>
<term>Abutment</term>
<term>Addition silicon</term>
<term>Addition silicons</term>
<term>Analogue</term>
<term>Angulated implants</term>
<term>Angulation</term>
<term>Cause strains</term>
<term>Clinical implant dentistry</term>
<term>Clinical practice</term>
<term>Connection length</term>
<term>Connection part</term>
<term>Control groups</term>
<term>Control models</term>
<term>Coping</term>
<term>Custom trays</term>
<term>Data distribution</term>
<term>Dent</term>
<term>Dental stone</term>
<term>Dentistry</term>
<term>Different impression materials</term>
<term>Different lengths</term>
<term>Dimensional accuracy</term>
<term>Edentulous</term>
<term>Edentulous plane</term>
<term>Edentulous ridge</term>
<term>Effects source</term>
<term>Effects source type</term>
<term>Elastomeric impression materials</term>
<term>Electric discharge machining</term>
<term>Experimental groups</term>
<term>Experimental models</term>
<term>Fernando zarone</term>
<term>Higher forces</term>
<term>Implant</term>
<term>Implant analogue</term>
<term>Implant analogues</term>
<term>Implant angulation</term>
<term>Implant dent</term>
<term>Implant impression techniques</term>
<term>Implant impressions</term>
<term>Implant placement</term>
<term>Implant prosthodontics</term>
<term>Important role</term>
<term>Impression accuracy</term>
<term>Impression carrier</term>
<term>Impression copings</term>
<term>Impression material</term>
<term>Impression materials</term>
<term>Impression procedures</term>
<term>Impression removal</term>
<term>Impression technique</term>
<term>Impression techniques</term>
<term>Impression tray</term>
<term>Impression trays</term>
<term>Interest statement</term>
<term>Internal connection</term>
<term>Intraoperator error variability</term>
<term>Intraoral</term>
<term>Intraoral position</term>
<term>Jemt</term>
<term>Laboratory investigation</term>
<term>Laboratory procedures</term>
<term>Longitudinal axes</term>
<term>Master cast accuracy</term>
<term>Master model</term>
<term>Master models</term>
<term>Material accuracy</term>
<term>Maxillary crest</term>
<term>Maxillofac</term>
<term>Measurements tests</term>
<term>Mechanical properties</term>
<term>Mesial</term>
<term>Mesial aspect</term>
<term>Minor movements</term>
<term>Model intercept material angulation</term>
<term>Nicholls</term>
<term>Nonparallel</term>
<term>Nonparallel implants</term>
<term>Null hypotheses</term>
<term>Numerical control machine</term>
<term>Oral maxillofac implants</term>
<term>Oral rehabil</term>
<term>Osseointegrated</term>
<term>Osseointegrated implants</term>
<term>Parallel implants</term>
<term>Pattern resin</term>
<term>Present investigation</term>
<term>Present study</term>
<term>Prosthesis</term>
<term>Prosthet</term>
<term>Prosthet dent</term>
<term>Prosthetic</term>
<term>Prosthodont</term>
<term>Prosthodontics</term>
<term>Reference points</term>
<term>Relative distortion</term>
<term>Relative humidity</term>
<term>Removal forces</term>
<term>Repeatable position</term>
<term>Right impression copings</term>
<term>Same height</term>
<term>Same time</term>
<term>Second molars</term>
<term>Second premolars</term>
<term>Silicon</term>
<term>Silicon indexes</term>
<term>Stainless steel</term>
<term>Stainless steel quadrangular plate</term>
<term>Standard deviations</term>
<term>Standard length connection</term>
<term>Statistical analysis</term>
<term>Stock trays</term>
<term>Subgingival depth</term>
<term>Testing device</term>
<term>Testing machine</term>
<term>Titanium frameworks</term>
<term>Transfer impressions</term>
<term>Winsix implant system</term>
<term>Zhermack</term>
</keywords>
<keywords scheme="Teeft" xml:lang="en"><term>Absolute control values</term>
<term>Absolute distortion</term>
<term>Abutment</term>
<term>Addition silicon</term>
<term>Addition silicons</term>
<term>Analogue</term>
<term>Angulated implants</term>
<term>Angulation</term>
<term>Cause strains</term>
<term>Clinical implant dentistry</term>
<term>Clinical practice</term>
<term>Connection length</term>
<term>Connection part</term>
<term>Control groups</term>
<term>Control models</term>
<term>Coping</term>
<term>Custom trays</term>
<term>Data distribution</term>
<term>Dent</term>
<term>Dental stone</term>
<term>Dentistry</term>
<term>Different impression materials</term>
<term>Different lengths</term>
<term>Dimensional accuracy</term>
<term>Edentulous</term>
<term>Edentulous plane</term>
<term>Edentulous ridge</term>
<term>Effects source</term>
<term>Effects source type</term>
<term>Elastomeric impression materials</term>
<term>Electric discharge machining</term>
<term>Experimental groups</term>
<term>Experimental models</term>
<term>Fernando zarone</term>
<term>Higher forces</term>
<term>Implant</term>
<term>Implant analogue</term>
<term>Implant analogues</term>
<term>Implant angulation</term>
<term>Implant dent</term>
<term>Implant impression techniques</term>
<term>Implant impressions</term>
<term>Implant placement</term>
<term>Implant prosthodontics</term>
<term>Important role</term>
<term>Impression accuracy</term>
<term>Impression carrier</term>
<term>Impression copings</term>
<term>Impression material</term>
<term>Impression materials</term>
<term>Impression procedures</term>
<term>Impression removal</term>
<term>Impression technique</term>
<term>Impression techniques</term>
<term>Impression tray</term>
<term>Impression trays</term>
<term>Interest statement</term>
<term>Internal connection</term>
<term>Intraoperator error variability</term>
<term>Intraoral</term>
<term>Intraoral position</term>
<term>Jemt</term>
<term>Laboratory investigation</term>
<term>Laboratory procedures</term>
<term>Longitudinal axes</term>
<term>Master cast accuracy</term>
<term>Master model</term>
<term>Master models</term>
<term>Material accuracy</term>
<term>Maxillary crest</term>
<term>Maxillofac</term>
<term>Measurements tests</term>
<term>Mechanical properties</term>
<term>Mesial</term>
<term>Mesial aspect</term>
<term>Minor movements</term>
<term>Model intercept material angulation</term>
<term>Nicholls</term>
<term>Nonparallel</term>
<term>Nonparallel implants</term>
<term>Null hypotheses</term>
<term>Numerical control machine</term>
<term>Oral maxillofac implants</term>
<term>Oral rehabil</term>
<term>Osseointegrated</term>
<term>Osseointegrated implants</term>
<term>Parallel implants</term>
<term>Pattern resin</term>
<term>Present investigation</term>
<term>Present study</term>
<term>Prosthesis</term>
<term>Prosthet</term>
<term>Prosthet dent</term>
<term>Prosthetic</term>
<term>Prosthodont</term>
<term>Prosthodontics</term>
<term>Reference points</term>
<term>Relative distortion</term>
<term>Relative humidity</term>
<term>Removal forces</term>
<term>Repeatable position</term>
<term>Right impression copings</term>
<term>Same height</term>
<term>Same time</term>
<term>Second molars</term>
<term>Second premolars</term>
<term>Silicon</term>
<term>Silicon indexes</term>
<term>Stainless steel</term>
<term>Stainless steel quadrangular plate</term>
<term>Standard deviations</term>
<term>Standard length connection</term>
<term>Statistical analysis</term>
<term>Stock trays</term>
<term>Subgingival depth</term>
<term>Testing device</term>
<term>Testing machine</term>
<term>Titanium frameworks</term>
<term>Transfer impressions</term>
<term>Winsix implant system</term>
<term>Zhermack</term>
</keywords>
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<front><div type="abstract">Background: With regard to implant‐supported prostheses, to date no technique has been proven to guarantee a completely passive fit of prosthetic frameworks. Several clinical variables may affect the precision of impressions, particularly in the presence of implants.</div>
</front>
</TEI>
</record>
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