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Implants with Original and Non‐Original Abutment Connections

Identifieur interne : 001776 ( Istex/Corpus ); précédent : 001775; suivant : 001777

Implants with Original and Non‐Original Abutment Connections

Auteurs : Michel Gigandet ; Gianni Bigolin ; Francisco Faoro ; Walter Bürgin ; Urs Br Gger

Source :

RBID : ISTEX:309FABECB30426029BBED01DEFC744ACA191C538

Abstract

To test in vitro the mechanical resistance, rotational misfit and failure mode of three original implant‐abutment connections and to compare them to two connections between non‐original abutments connected to one of the original implants.

Url:
DOI: 10.1111/j.1708-8208.2012.00479.x

Links to Exploration step

ISTEX:309FABECB30426029BBED01DEFC744ACA191C538

Le document en format XML

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<head>Abstract</head>
Aim
<p>To test
<hi rend="italic">in vitro</hi>
the mechanical resistance, rotational misfit and failure mode of three original implant‐abutment connections and to compare them to two connections between non‐original abutments connected to one of the original implants.</p>
Material and Methods
<p>Three different implants with small diameters (3.3 mm for
<hi rend="fc">S</hi>
traumann
<hi rend="fc">R</hi>
oxolid, 3.5 mm for
<hi rend="fc">N</hi>
obel
<hi rend="fc">B</hi>
iocare
<hi rend="fc">R</hi>
eplace and
<hi rend="fc">A</hi>
stra
<hi rend="fc">T</hi>
ech
<hi rend="fc">O</hi>
sseospeed
<hi rend="fc">TX</hi>
) were connected with individualized titanium abutments.</p>
<p>Twelve implants from each system were connected to their original abutments (
<hi rend="fc">S</hi>
traumann
<hi rend="fc">CARES</hi>
,
<hi rend="fc">N</hi>
obel
<hi rend="fc">B</hi>
iocare
<hi rend="fc">P</hi>
rocera,
<hi rend="fc">A</hi>
stra
<hi rend="fc">T</hi>
ech
<hi rend="fc">A</hi>
tlantis). Twenty‐four
<hi rend="fc">R</hi>
oxolid implants were connected with non‐original abutments using
<hi rend="fc">CAD</hi>
/
<hi rend="fc">CAM</hi>
procedures from the other two manufacturers (12
<hi rend="fc">N</hi>
obel
<hi rend="fc">B</hi>
iocare
<hi rend="fc">P</hi>
rocera and 12
<hi rend="fc">A</hi>
stra
<hi rend="fc">T</hi>
ech
<hi rend="fc">A</hi>
tlantis). For the critical bending test, a
<hi rend="fc">Z</hi>
wick/
<hi rend="fc">R</hi>
oell 1475 machine and the
<hi rend="fc">X</hi>
pert
<hi rend="fc">Z</hi>
wick/
<hi rend="fc">R</hi>
oell software were used.</p>
Results
<p>The rotational misfit varied when comparing the different interfaces. The use of non‐original grade
<hi rend="fc">V</hi>
titanium abutments on
<hi rend="fc">R</hi>
oxolid implants increased the force needed for deformation. The fracture mode was different with one of the original connections.</p>
Conclusions
<p>Non‐original abutments differ in design of the connecting surfaces and material and demonstrate higher rotational misfit. These differences may result in unexpected failure modes.</p>
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<familyName>Brägger</familyName>
<degrees>Prof. Dr. med. dent</degrees>
</personName>
</creator>
</creators>
<affiliationGroup>
<affiliation countryCode="CH" xml:id="cid479-aff-0001">
<orgDiv>School of Dental Medicine</orgDiv>
<orgName>University of Bern</orgName>
<address>
<city>Bern</city>
<country>Switzerland</country>
</address>
</affiliation>
<affiliation countryCode="CH" xml:id="cid479-aff-0002">
<orgName>RMS Foundation</orgName>
<address>
<city>Bettlach</city>
<country>Switzerland</country>
</address>
</affiliation>
<affiliation countryCode="CH" xml:id="cid479-aff-0003">
<orgName>Institut Straumann</orgName>
<address>
<city>Basel</city>
<country>Switzerland</country>
</address>
</affiliation>
</affiliationGroup>
<keywordGroup type="author">
<keyword xml:id="cid479-kwd-0001">abutment connection</keyword>
<keyword xml:id="cid479-kwd-0002">abutments</keyword>
<keyword xml:id="cid479-kwd-0003">
<fc>CAD</fc>
/
<fc>CAM</fc>
</keyword>
<keyword xml:id="cid479-kwd-0004">dental implants</keyword>
<keyword xml:id="cid479-kwd-0005">
<fc>ISO</fc>
14801</keyword>
<keyword xml:id="cid479-kwd-0006">non‐original</keyword>
<keyword xml:id="cid479-kwd-0007">original</keyword>
<keyword xml:id="cid479-kwd-0008">titanium grade
<fc>IV</fc>
</keyword>
<keyword xml:id="cid479-kwd-0009">titanium grade
<fc>V</fc>
</keyword>
</keywordGroup>
<abstractGroup>
<abstract type="main">
<title type="main">Abstract</title>
<section xml:id="cid479-sec-0001">
<title type="main">Aim</title>
<p>To test
<i>in vitro</i>
the mechanical resistance, rotational misfit and failure mode of three original implant‐abutment connections and to compare them to two connections between non‐original abutments connected to one of the original implants.</p>
</section>
<section xml:id="cid479-sec-0002">
<title type="main">Material and Methods</title>
<p>Three different implants with small diameters (3.3 mm for
<fc>S</fc>
traumann
<fc>R</fc>
oxolid, 3.5 mm for
<fc>N</fc>
obel
<fc>B</fc>
iocare
<fc>R</fc>
eplace and
<fc>A</fc>
stra
<fc>T</fc>
ech
<fc>O</fc>
sseospeed
<fc>TX</fc>
) were connected with individualized titanium abutments.</p>
<p>Twelve implants from each system were connected to their original abutments (
<fc>S</fc>
traumann
<fc>CARES</fc>
,
<fc>N</fc>
obel
<fc>B</fc>
iocare
<fc>P</fc>
rocera,
<fc>A</fc>
stra
<fc>T</fc>
ech
<fc>A</fc>
tlantis). Twenty‐four
<fc>R</fc>
oxolid implants were connected with non‐original abutments using
<fc>CAD</fc>
/
<fc>CAM</fc>
procedures from the other two manufacturers (12
<fc>N</fc>
obel
<fc>B</fc>
iocare
<fc>P</fc>
rocera and 12
<fc>A</fc>
stra
<fc>T</fc>
ech
<fc>A</fc>
tlantis). For the critical bending test, a
<fc>Z</fc>
wick/
<fc>R</fc>
oell 1475 machine and the
<fc>X</fc>
pert
<fc>Z</fc>
wick/
<fc>R</fc>
oell software were used.</p>
</section>
<section xml:id="cid479-sec-0003">
<title type="main">Results</title>
<p>The rotational misfit varied when comparing the different interfaces. The use of non‐original grade
<fc>V</fc>
titanium abutments on
<fc>R</fc>
oxolid implants increased the force needed for deformation. The fracture mode was different with one of the original connections.</p>
</section>
<section xml:id="cid479-sec-0004">
<title type="main">Conclusions</title>
<p>Non‐original abutments differ in design of the connecting surfaces and material and demonstrate higher rotational misfit. These differences may result in unexpected failure modes.</p>
</section>
</abstract>
</abstractGroup>
</contentMeta>
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<title>Implants with Original and Non‐Original Abutment Connections</title>
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<title>Original and Non‐Original Abutment Connections</title>
</titleInfo>
<titleInfo type="alternative" contentType="CDATA" lang="en">
<title>Implants with Original and Non‐Original Abutment Connections</title>
</titleInfo>
<name type="personal">
<namePart type="given">Michel</namePart>
<namePart type="family">Gigandet</namePart>
<namePart type="termsOfAddress">med. dent</namePart>
<affiliation>School of Dental Medicine, University of Bern, Bern, Switzerland</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
<description>Doctoral candidate</description>
</name>
<name type="personal">
<namePart type="given">Gianni</namePart>
<namePart type="family">Bigolin</namePart>
<affiliation>RMS Foundation, Bettlach, Switzerland</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
<description>testing mechanic</description>
</name>
<name type="personal">
<namePart type="given">Francisco</namePart>
<namePart type="family">Faoro</namePart>
<affiliation>Institut Straumann, Basel, Switzerland</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
<description>director production development</description>
</name>
<name type="personal">
<namePart type="given">Walter</namePart>
<namePart type="family">Bürgin</namePart>
<namePart type="termsOfAddress">biomed. eng</namePart>
<affiliation>School of Dental Medicine, University of Bern, Bern, Switzerland</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
<description>scientific advisor</description>
</name>
<name type="personal">
<namePart type="given">Urs</namePart>
<namePart type="family">Brägger</namePart>
<namePart type="termsOfAddress">Prof. Dr. med. dent</namePart>
<affiliation>School of Dental Medicine, University of Bern, Bern, Switzerland</affiliation>
<affiliation>E-mail: urs.braegger@zmk.unibe.ch</affiliation>
<role>
<roleTerm type="text">author</roleTerm>
</role>
</name>
<typeOfResource>text</typeOfResource>
<genre type="article" displayLabel="article" authority="ISTEX" authorityURI="https://content-type.data.istex.fr" valueURI="https://content-type.data.istex.fr/ark:/67375/XTP-6N5SZHKN-D">article</genre>
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<publisher>Blackwell Publishing Ltd</publisher>
<dateIssued encoding="w3cdtf">2014-04</dateIssued>
<dateCreated encoding="w3cdtf">2012-06-20</dateCreated>
<copyrightDate encoding="w3cdtf">2014</copyrightDate>
</originInfo>
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<languageTerm type="code" authority="iso639-2b">eng</languageTerm>
</language>
<abstract>To test in vitro the mechanical resistance, rotational misfit and failure mode of three original implant‐abutment connections and to compare them to two connections between non‐original abutments connected to one of the original implants.</abstract>
<abstract>Three different implants with small diameters (3.3 mm for Straumann Roxolid, 3.5 mm for Nobel Biocare Replace and Astra Tech Osseospeed TX) were connected with individualized titanium abutments. Twelve implants from each system were connected to their original abutments (Straumann CARES, Nobel Biocare Procera, Astra Tech Atlantis). Twenty‐four Roxolid implants were connected with non‐original abutments using CAD/CAM procedures from the other two manufacturers (12 Nobel Biocare Procera and 12 Astra Tech Atlantis). For the critical bending test, a Zwick/Roell 1475 machine and the Xpert Zwick/Roell software were used.</abstract>
<abstract>The rotational misfit varied when comparing the different interfaces. The use of non‐original grade V titanium abutments on Roxolid implants increased the force needed for deformation. The fracture mode was different with one of the original connections.</abstract>
<abstract>Non‐original abutments differ in design of the connecting surfaces and material and demonstrate higher rotational misfit. These differences may result in unexpected failure modes.</abstract>
<subject>
<genre>keywords</genre>
<topic>abutment connection</topic>
<topic>abutments</topic>
<topic>CAD/CAM</topic>
<topic>dental implants</topic>
<topic>ISO 14801</topic>
<topic>non‐original</topic>
<topic>original</topic>
<topic>titanium grade IV</topic>
<topic>titanium grade V</topic>
</subject>
<relatedItem type="host">
<titleInfo>
<title>Clinical Implant Dentistry and Related Research</title>
</titleInfo>
<titleInfo type="abbreviated">
<title>Clinical Implant Dentistry and Related Research</title>
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<subject>
<genre>article-category</genre>
<topic>ARTICLE</topic>
</subject>
<identifier type="ISSN">1523-0899</identifier>
<identifier type="eISSN">1708-8208</identifier>
<identifier type="DOI">10.1111/(ISSN)1708-8208</identifier>
<identifier type="PublisherID">CID</identifier>
<part>
<date>2014</date>
<detail type="volume">
<caption>vol.</caption>
<number>16</number>
</detail>
<detail type="issue">
<caption>no.</caption>
<number>2</number>
</detail>
<extent unit="pages">
<start>303</start>
<end>311</end>
<total>9</total>
</extent>
</part>
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<identifier type="istex">309FABECB30426029BBED01DEFC744ACA191C538</identifier>
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<identifier type="DOI">10.1111/j.1708-8208.2012.00479.x</identifier>
<identifier type="ArticleID">CID479</identifier>
<accessCondition type="use and reproduction" contentType="copyright">Copyright © 2014 Wiley Periodicals, Inc.© 2012 Wiley Periodicals, Inc.</accessCondition>
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