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Fracture resistance of single‐tooth implant‐supported zirconia‐based indirect composite‐layered molar restorations

Identifieur interne : 003692 ( Istex/Corpus ); précédent : 003691; suivant : 003693

Fracture resistance of single‐tooth implant‐supported zirconia‐based indirect composite‐layered molar restorations

Auteurs : Kohei Taguchi ; Futoshi Komine ; Ryosuke Fushiki ; Markus B. Blatz ; Shingo Kamio ; Hideo Matsumura

Source :

RBID : ISTEX:6EEC9D18F76671C3D8BF62FCCD72571D404BD23A

Abstract

This study evaluated the fracture resistance of single‐tooth implant‐supported zirconia‐based indirect composite‐layered molar restorations.

Url:
DOI: 10.1111/clr.12199

Links to Exploration step

ISTEX:6EEC9D18F76671C3D8BF62FCCD72571D404BD23A

Le document en format XML

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<affiliation>Corresponding author: Futoshi Komine, DDS, PhD Department of Fixed Prosthodontics, Nihon University School of Dentistry 1‐8‐13, Kanda‐Surugadai, Chiyoda‐Ku, Tokyo 101‐8310, Japan Tel.: +81‐3‐3219‐8145 Fax: +81‐3‐3219‐8351 e‐mail: komine.futoshi@nihon-u.ac.jp</affiliation>
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<head>Abstract</head>
Objectives
<p>This study evaluated the fracture resistance of single‐tooth implant‐supported zirconia‐based indirect composite‐layered molar restorations.</p>
Material and methods
<p>Forty‐four titanium abutments (
<hi rend="fc">G</hi>
ingi
<hi rend="fc">H</hi>
ue
<hi rend="fc">P</hi>
ost) were placed on dental implants (
<hi rend="fc">O</hi>
sseotite
<hi rend="fc">I</hi>
mplant). Standardized single‐tooth cement‐retained implant‐supported mandibular molar restorations were fabricated for each of four test groups (
<hi rend="italic"></hi>
=
<hi rend="italic"> </hi>
11) as follows: porcelain‐fused‐to‐metal crowns (
<hi rend="fc">PFM</hi>
), zirconia‐based all‐ceramic crowns (
<hi rend="fc">ZAC</hi>
), zirconia‐based indirect composite‐layered crowns primed with
<hi rend="fc">E</hi>
stenia
<hi rend="fc">O</hi>
paque
<hi rend="fc">P</hi>
rimer for zirconia frameworks (
<hi rend="fc">ZIC</hi>
<hi rend="fc">E</hi>
), and zirconia‐based indirect composite‐layered crowns (
<hi rend="fc">ZIC</hi>
). The crowns were luted with a glass‐ionomer cement (
<hi rend="fc">K</hi>
etac
<hi rend="fc">C</hi>
em
<hi rend="fc">E</hi>
asymix). Fracture resistance (
<hi rend="fc">N</hi>
) was determined by force application of a perpendicular load to the crowns with a universal testing machine. One‐way analysis of variance (
<hi rend="fc">ANOVA</hi>
) and the
<hi rend="fc">T</hi>
ukey's
<hi rend="fc">HSD</hi>
test were used to assess differences in fracture resistance values (α = 0.05).</p>
Results
<p>Mean fracture resistances (
<hi rend="fc">SD</hi>
) were 3.09 (0.22)
<hi rend="fc">kN</hi>
, 3.11 (0.34)
<hi rend="fc">kN</hi>
, 2.84 (0.21) k
<hi rend="fc">N</hi>
, and 2.50 (0.36)
<hi rend="fc">kN</hi>
for the
<hi rend="fc">PFM</hi>
,
<hi rend="fc"> ZAC</hi>
,
<hi rend="fc"> ZIC</hi>
<hi rend="fc">E</hi>
, and
<hi rend="fc">ZIC</hi>
groups, respectively. Fracture resistance in the
<hi rend="fc">ZIC</hi>
specimens was significantly lower (
<hi rend="italic"></hi>
<
<hi rend="italic"> </hi>
0.044) than that in the other groups, which did not significantly differ.</p>
Conclusions
<p>The fracture resistance of single‐tooth implant‐supported zirconia‐based indirect composite‐layered molar crowns primed with
<hi rend="fc">E</hi>
stenia
<hi rend="fc">O</hi>
paque
<hi rend="fc">P</hi>
rimer for zirconia frameworks (
<hi rend="fc">ZIC</hi>
<hi rend="fc">E</hi>
) is comparable to that of porcelain‐fused‐to‐metal (
<hi rend="fc">PFM</hi>
) and zirconia‐based all‐ceramic (
<hi rend="fc">ZAC</hi>
) restorations. Application of
<hi rend="fc">E</hi>
stenia
<hi rend="fc">O</hi>
paque
<hi rend="fc">P</hi>
rimer to zirconia ceramic framework provides superior fracture resistance in implant‐supported zirconia‐based indirect composite‐layered molar crowns.</p>
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<b>Corresponding author:</b>
</line>
<line>
<i>Futoshi Komine</i>
, DDS, PhD</line>
<line>Department of Fixed Prosthodontics, Nihon University School of Dentistry</line>
<line>1‐8‐13, Kanda‐Surugadai, Chiyoda‐Ku, Tokyo 101‐8310, Japan</line>
<line>Tel.: +81‐3‐3219‐8145</line>
<line>Fax: +81‐3‐3219‐8351</line>
<line>e‐mail:
<email>komine.futoshi@nihon-u.ac.jp</email>
</line>
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<author>
<familyName>Taguchi</familyName>
<givenNames>K</givenNames>
</author>
,
<author>
<familyName>Komine</familyName>
<givenNames>F</givenNames>
</author>
,
<author>
<familyName>Fushiki</familyName>
<givenNames>R</givenNames>
</author>
,
<author>
<familyName>Blatz</familyName>
<givenNames>MB</givenNames>
</author>
,
<author>
<familyName>Kamio</familyName>
<givenNames>S</givenNames>
</author>
,
<author>
<familyName>Matsumura</familyName>
<givenNames>H</givenNames>
</author>
.
<articleTitle>Fracture resistance of single‐tooth implant‐supported zirconia‐based indirect composite‐layered molar restorations</articleTitle>
.
<journalTitle>Clin. Oral Impl. Res.</journalTitle>
<vol>25</vol>
,
<pubYear year="2014">2014</pubYear>
,
<pageFirst>983</pageFirst>
<pageLast>991</pageLast>
doi
<accessionId ref="info:doi/10.1111/clr.12199">10.1111/clr.12199</accessionId>
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<title type="main">Fracture resistance of single‐tooth implant‐supported zirconia‐based indirect composite‐layered molar restorations</title>
<title type="shortAuthors">Taguchi et al</title>
</titleGroup>
<creators>
<creator affiliationRef="#clr12199-aff-0001" creatorRole="author" xml:id="clr12199-cr-0001">
<personName>
<givenNames>Kohei</givenNames>
<familyName>Taguchi</familyName>
</personName>
</creator>
<creator affiliationRef="#clr12199-aff-0002" corresponding="yes" creatorRole="author" xml:id="clr12199-cr-0002">
<personName>
<givenNames>Futoshi</givenNames>
<familyName>Komine</familyName>
</personName>
</creator>
<creator affiliationRef="#clr12199-aff-0002" creatorRole="author" xml:id="clr12199-cr-0003">
<personName>
<givenNames>Ryosuke</givenNames>
<familyName>Fushiki</familyName>
</personName>
</creator>
<creator affiliationRef="#clr12199-aff-0003" creatorRole="author" xml:id="clr12199-cr-0004">
<personName>
<givenNames>Markus B.</givenNames>
<familyName>Blatz</familyName>
</personName>
</creator>
<creator affiliationRef="#clr12199-aff-0001" creatorRole="author" xml:id="clr12199-cr-0005">
<personName>
<givenNames>Shingo</givenNames>
<familyName>Kamio</familyName>
</personName>
</creator>
<creator affiliationRef="#clr12199-aff-0002" creatorRole="author" xml:id="clr12199-cr-0006">
<personName>
<givenNames>Hideo</givenNames>
<familyName>Matsumura</familyName>
</personName>
</creator>
</creators>
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<affiliation countryCode="JP" type="organization" xml:id="clr12199-aff-0001">
<orgDiv>Major in Fixed Prosthodontics</orgDiv>
<orgName>Nihon University Graduate School of Dentistry</orgName>
<address>
<city>Tokyo</city>
<country>Japan</country>
</address>
</affiliation>
<affiliation countryCode="JP" type="organization" xml:id="clr12199-aff-0002">
<orgDiv>Department of Fixed Prosthodontics</orgDiv>
<orgName>Nihon University School of Dentistry</orgName>
<address>
<city>Tokyo</city>
<country>Japan</country>
</address>
</affiliation>
<affiliation countryCode="US" type="organization" xml:id="clr12199-aff-0003">
<orgDiv>Department of Preventive and Restorative Sciences</orgDiv>
<orgName>University of Pennsylvania School of Dental Medicine</orgName>
<address>
<city>Philadelphia</city>
<countryPart>PA</countryPart>
<country>USA</country>
</address>
</affiliation>
</affiliationGroup>
<keywordGroup type="author">
<keyword xml:id="clr12199-kwd-0001">dental implant</keyword>
<keyword xml:id="clr12199-kwd-0002">fracture resistance</keyword>
<keyword xml:id="clr12199-kwd-0003">implant framework</keyword>
<keyword xml:id="clr12199-kwd-0004">indirect composite material</keyword>
<keyword xml:id="clr12199-kwd-0005">zirconia ceramics</keyword>
</keywordGroup>
<fundingInfo>
<fundingAgency>JSPS KAKENHI</fundingAgency>
<fundingNumber>24592933</fundingNumber>
</fundingInfo>
<fundingInfo>
<fundingAgency>Sato Fund, Nihon University School of Dentistry</fundingAgency>
</fundingInfo>
<fundingInfo>
<fundingAgency>Promotion and Mutual Aid Corporation for Private Schools of Japan</fundingAgency>
</fundingInfo>
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<title type="main">Abstract</title>
<section xml:id="clr12199-sec-0001">
<title type="main">Objectives</title>
<p>This study evaluated the fracture resistance of single‐tooth implant‐supported zirconia‐based indirect composite‐layered molar restorations.</p>
</section>
<section xml:id="clr12199-sec-0002">
<title type="main">Material and methods</title>
<p>Forty‐four titanium abutments (
<fc>G</fc>
ingi
<fc>H</fc>
ue
<fc>P</fc>
ost) were placed on dental implants (
<fc>O</fc>
sseotite
<fc>I</fc>
mplant). Standardized single‐tooth cement‐retained implant‐supported mandibular molar restorations were fabricated for each of four test groups (
<i></i>
=
<i> </i>
11) as follows: porcelain‐fused‐to‐metal crowns (
<fc>PFM</fc>
), zirconia‐based all‐ceramic crowns (
<fc>ZAC</fc>
), zirconia‐based indirect composite‐layered crowns primed with
<fc>E</fc>
stenia
<fc>O</fc>
paque
<fc>P</fc>
rimer for zirconia frameworks (
<fc>ZIC</fc>
<fc>E</fc>
), and zirconia‐based indirect composite‐layered crowns (
<fc>ZIC</fc>
). The crowns were luted with a glass‐ionomer cement (
<fc>K</fc>
etac
<fc>C</fc>
em
<fc>E</fc>
asymix). Fracture resistance (
<fc>N</fc>
) was determined by force application of a perpendicular load to the crowns with a universal testing machine. One‐way analysis of variance (
<fc>ANOVA</fc>
) and the
<fc>T</fc>
ukey's
<fc>HSD</fc>
test were used to assess differences in fracture resistance values (α = 0.05).</p>
</section>
<section xml:id="clr12199-sec-0003">
<title type="main">Results</title>
<p>Mean fracture resistances (
<fc>SD</fc>
) were 3.09 (0.22)
<fc>kN</fc>
, 3.11 (0.34)
<fc>kN</fc>
, 2.84 (0.21) k
<fc>N</fc>
, and 2.50 (0.36)
<fc>kN</fc>
for the
<fc>PFM</fc>
,
<fc> ZAC</fc>
,
<fc> ZIC</fc>
<fc>E</fc>
, and
<fc>ZIC</fc>
groups, respectively. Fracture resistance in the
<fc>ZIC</fc>
specimens was significantly lower (
<i></i>
<
<i> </i>
0.044) than that in the other groups, which did not significantly differ.</p>
</section>
<section xml:id="clr12199-sec-0004">
<title type="main">Conclusions</title>
<p>The fracture resistance of single‐tooth implant‐supported zirconia‐based indirect composite‐layered molar crowns primed with
<fc>E</fc>
stenia
<fc>O</fc>
paque
<fc>P</fc>
rimer for zirconia frameworks (
<fc>ZIC</fc>
<fc>E</fc>
) is comparable to that of porcelain‐fused‐to‐metal (
<fc>PFM</fc>
) and zirconia‐based all‐ceramic (
<fc>ZAC</fc>
) restorations. Application of
<fc>E</fc>
stenia
<fc>O</fc>
paque
<fc>P</fc>
rimer to zirconia ceramic framework provides superior fracture resistance in implant‐supported zirconia‐based indirect composite‐layered molar crowns.</p>
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<affiliation>, DDS, PhDDepartment of Fixed Prosthodontics, Nihon University School of Dentistry1‐8‐13, Kanda‐Surugadai, Chiyoda‐Ku, Tokyo 101‐8310, JapanTel.: +81‐3‐3219‐8145Fax: +81‐3‐3219‐8351e‐mail:</affiliation>
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<abstract>This study evaluated the fracture resistance of single‐tooth implant‐supported zirconia‐based indirect composite‐layered molar restorations.</abstract>
<abstract>Forty‐four titanium abutments (GingiHue Post) were placed on dental implants (Osseotite Implant). Standardized single‐tooth cement‐retained implant‐supported mandibular molar restorations were fabricated for each of four test groups (n = 11) as follows: porcelain‐fused‐to‐metal crowns (PFM), zirconia‐based all‐ceramic crowns (ZAC), zirconia‐based indirect composite‐layered crowns primed with Estenia Opaque Primer for zirconia frameworks (ZIC‐E), and zirconia‐based indirect composite‐layered crowns (ZIC). The crowns were luted with a glass‐ionomer cement (Ketac Cem Easymix). Fracture resistance (N) was determined by force application of a perpendicular load to the crowns with a universal testing machine. One‐way analysis of variance (ANOVA) and the Tukey's HSD test were used to assess differences in fracture resistance values (α = 0.05).</abstract>
<abstract>Mean fracture resistances (SD) were 3.09 (0.22) kN, 3.11 (0.34) kN, 2.84 (0.21) kN, and 2.50 (0.36) kN for the PFM, ZAC, ZIC‐E, and ZIC groups, respectively. Fracture resistance in the ZIC specimens was significantly lower (P < 0.044) than that in the other groups, which did not significantly differ.</abstract>
<abstract>The fracture resistance of single‐tooth implant‐supported zirconia‐based indirect composite‐layered molar crowns primed with Estenia Opaque Primer for zirconia frameworks (ZIC‐E) is comparable to that of porcelain‐fused‐to‐metal (PFM) and zirconia‐based all‐ceramic (ZAC) restorations. Application of Estenia Opaque Primer to zirconia ceramic framework provides superior fracture resistance in implant‐supported zirconia‐based indirect composite‐layered molar crowns.</abstract>
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