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The Precision of Fit of Milled Titanium Implant Frameworks (I‐Bridge®) in the Edentulous Jaw

Identifieur interne : 004728 ( Istex/Corpus ); précédent : 004727; suivant : 004729

The Precision of Fit of Milled Titanium Implant Frameworks (I‐Bridge®) in the Edentulous Jaw

Auteurs : Alf Eliasson ; Ann Wennerberg ; Anders Johansson ; Anders Örtorp ; Torsten Jemt

Source :

RBID : ISTEX:8EA54F7AF75702A961C9188BE8A6B47B1311D06D

English descriptors

Abstract

Background: New computer numeric controlled (CNC)–milled frameworks for implant‐supported prostheses have been introduced. However, no data are available on the precision of fit of these new frameworks.

Url:
DOI: 10.1111/j.1708-8208.2008.00131.x

Links to Exploration step

ISTEX:8EA54F7AF75702A961C9188BE8A6B47B1311D06D

Le document en format XML

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<div type="abstract">Background: New computer numeric controlled (CNC)–milled frameworks for implant‐supported prostheses have been introduced. However, no data are available on the precision of fit of these new frameworks.</div>
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<hi rend="bold">Background:</hi>
New computer numeric controlled (CNC)–milled frameworks for implant‐supported prostheses have been introduced. However, no data are available on the precision of fit of these new frameworks.</p>
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<hi rend="bold">Purpose:</hi>
The purpose of this study is to evaluate the precision of fit of a new CNC‐milled framework technique (I‐Bridge®, Biomain AB, Helsingborg, Sweden) using Brånemark System® (Nobel Biocare AB, Göteborg, Sweden) and NobelReplace™ (Nobel Biocare AB) system implants.</p>
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<hi rend="bold">Materials and Methods:</hi>
Ten test frameworks were fabricated for one master model for each implant system. Five additional frameworks were fabricated for five different models simulating clinical cases as controls (Brånemark System). The distortion of implant center point positions was measured in x‐, y‐, and z‐axes and in three dimensions by using a contact‐type coordinate measuring machine and a computer program developed specifically for this purpose. Mann–Whitney
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<hi rend="bold">Results:</hi>
The maximal distortion in arch width (x‐axis) and curvature (y‐axis) was within 71 and 55 µm for all frameworks, respectively. The mean distortion in absolute figures in x‐, y‐, z‐axes and three dimensions was for “clinical control” frameworks 23, 26, 4, and 34 µm as compared with less than 12, 12, 2, and 17 µm for Brånemark and NobelReplace frameworks, respectively. Control frameworks showed significantly (
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<hi rend="bold">Conclusion:</hi>
All measured frameworks presented signs of misfit, indicating that no framework had a “passive fit.” Frameworks produced in a more routine clinical environment seem to present greater levels of distortion as compared with frameworks produced in a strict test situation. However, all measured frameworks presented levels of precision of fit within limits considered to be clinically acceptable in earlier studies of frameworks placed on abutments.</p>
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<b>Background:</b>
New computer numeric controlled (CNC)–milled frameworks for implant‐supported prostheses have been introduced. However, no data are available on the precision of fit of these new frameworks.</p>
<p>
<b>Purpose:</b>
The purpose of this study is to evaluate the precision of fit of a new CNC‐milled framework technique (I‐Bridge®, Biomain AB, Helsingborg, Sweden) using Brånemark System® (Nobel Biocare AB, Göteborg, Sweden) and NobelReplace™ (Nobel Biocare AB) system implants.</p>
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<b>Materials and Methods:</b>
Ten test frameworks were fabricated for one master model for each implant system. Five additional frameworks were fabricated for five different models simulating clinical cases as controls (Brånemark System). The distortion of implant center point positions was measured in x‐, y‐, and z‐axes and in three dimensions by using a contact‐type coordinate measuring machine and a computer program developed specifically for this purpose. Mann–Whitney
<i>U</i>
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<b>Results:</b>
The maximal distortion in arch width (x‐axis) and curvature (y‐axis) was within 71 and 55 µm for all frameworks, respectively. The mean distortion in absolute figures in x‐, y‐, z‐axes and three dimensions was for “clinical control” frameworks 23, 26, 4, and 34 µm as compared with less than 12, 12, 2, and 17 µm for Brånemark and NobelReplace frameworks, respectively. Control frameworks showed significantly (
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<b>Conclusion:</b>
All measured frameworks presented signs of misfit, indicating that no framework had a “passive fit.” Frameworks produced in a more routine clinical environment seem to present greater levels of distortion as compared with frameworks produced in a strict test situation. However, all measured frameworks presented levels of precision of fit within limits considered to be clinically acceptable in earlier studies of frameworks placed on abutments.</p>
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<abstract>Background: New computer numeric controlled (CNC)–milled frameworks for implant‐supported prostheses have been introduced. However, no data are available on the precision of fit of these new frameworks.</abstract>
<abstract>Purpose: The purpose of this study is to evaluate the precision of fit of a new CNC‐milled framework technique (I‐Bridge®, Biomain AB, Helsingborg, Sweden) using Brånemark System® (Nobel Biocare AB, Göteborg, Sweden) and NobelReplace™ (Nobel Biocare AB) system implants.</abstract>
<abstract>Materials and Methods: Ten test frameworks were fabricated for one master model for each implant system. Five additional frameworks were fabricated for five different models simulating clinical cases as controls (Brånemark System). The distortion of implant center point positions was measured in x‐, y‐, and z‐axes and in three dimensions by using a contact‐type coordinate measuring machine and a computer program developed specifically for this purpose. Mann–Whitney U‐test was used to compare differences of distortion within and between the groups.</abstract>
<abstract>Results: The maximal distortion in arch width (x‐axis) and curvature (y‐axis) was within 71 and 55 µm for all frameworks, respectively. The mean distortion in absolute figures in x‐, y‐, z‐axes and three dimensions was for “clinical control” frameworks 23, 26, 4, and 34 µm as compared with less than 12, 12, 2, and 17 µm for Brånemark and NobelReplace frameworks, respectively. Control frameworks showed significantly (p < .05) greater mean and range of distortions in x‐ and y‐axes and in three dimensions compared with test frameworks.</abstract>
<abstract>Conclusion: All measured frameworks presented signs of misfit, indicating that no framework had a “passive fit.” Frameworks produced in a more routine clinical environment seem to present greater levels of distortion as compared with frameworks produced in a strict test situation. However, all measured frameworks presented levels of precision of fit within limits considered to be clinically acceptable in earlier studies of frameworks placed on abutments.</abstract>
<subject lang="en">
<genre>keywords</genre>
<topic>CNC milling</topic>
<topic>dental implant</topic>
<topic>edentulous mandible</topic>
<topic>fit of prostheses</topic>
<topic>frameworks</topic>
<topic>in vivo study</topic>
<topic>titanium</topic>
</subject>
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<title>Clinical Implant Dentistry and Related Research</title>
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<genre type="journal" authority="ISTEX" authorityURI="https://publication-type.data.istex.fr" valueURI="https://publication-type.data.istex.fr/ark:/67375/JMC-0GLKJH51-B">journal</genre>
<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>2010</date>
<detail type="volume">
<caption>vol.</caption>
<number>12</number>
</detail>
<detail type="issue">
<caption>no.</caption>
<number>2</number>
</detail>
<extent unit="pages">
<start>81</start>
<end>90</end>
<total>10</total>
</extent>
</part>
</relatedItem>
<identifier type="istex">8EA54F7AF75702A961C9188BE8A6B47B1311D06D</identifier>
<identifier type="ark">ark:/67375/WNG-3KB0JL9W-0</identifier>
<identifier type="DOI">10.1111/j.1708-8208.2008.00131.x</identifier>
<identifier type="ArticleID">CID131</identifier>
<accessCondition type="use and reproduction" contentType="copyright">© 2008, Copyright the Authors. Journal Compilation © 2008, Wiley Periodicals, Inc.</accessCondition>
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<recordOrigin>Blackwell Publishing Ltd</recordOrigin>
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   |texte=   The Precision of Fit of Milled Titanium Implant Frameworks (I‐Bridge®) in the Edentulous Jaw
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