Serveur d'exploration sur le patient édenté

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Virtual variation simulation of CAD/CAM template-guided surgeries performed on human cadavers: Part II.

Identifieur interne : 001329 ( PubMed/Checkpoint ); précédent : 001328; suivant : 001330

Virtual variation simulation of CAD/CAM template-guided surgeries performed on human cadavers: Part II.

Auteurs : Timo Kero [Suède] ; Andreas Pettersson ; Jenny F Ldt ; Matts Andersson ; Luc Gillot ; Bernard Cannas ; Karin N Sström ; Rikard Söderberg

Source :

RBID : pubmed:20620367

Descripteurs français

English descriptors

Abstract

CAD/CAM template-guided surgery has gained attention as a method of improving the predictability of dental implant placement. However, due to possible variations during the manufacturing process and in the robustness of the template design, a virtual prediction of the potential positioning of the implants is needed.

DOI: 10.1016/S0022-3913(10)60089-3
PubMed: 20620367


Affiliations:


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pubmed:20620367

Le document en format XML

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<title level="j">The Journal of prosthetic dentistry</title>
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<term>Computer Simulation</term>
<term>Computer-Aided Design (statistics & numerical data)</term>
<term>Dental Implantation, Endosseous (instrumentation)</term>
<term>Dental Implantation, Endosseous (methods)</term>
<term>Dental Implantation, Endosseous (statistics & numerical data)</term>
<term>Dental Implants (statistics & numerical data)</term>
<term>Humans</term>
<term>Image Processing, Computer-Assisted (methods)</term>
<term>Jaw, Edentulous (pathology)</term>
<term>Jaw, Edentulous (surgery)</term>
<term>Mandible (pathology)</term>
<term>Mandible (surgery)</term>
<term>Maxilla (pathology)</term>
<term>Maxilla (surgery)</term>
<term>Models, Anatomic</term>
<term>Monte Carlo Method</term>
<term>Patient Care Planning (statistics & numerical data)</term>
<term>Surgery, Computer-Assisted (statistics & numerical data)</term>
<term>Tomography, X-Ray Computed (methods)</term>
<term>User-Computer Interface</term>
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<term>Cadavre</term>
<term>Chirurgie assistée par ordinateur ()</term>
<term>Conception assistée par ordinateur ()</term>
<term>Humains</term>
<term>Implants dentaires ()</term>
<term>Interface utilisateur</term>
<term>Mandibule ()</term>
<term>Mandibule (anatomopathologie)</term>
<term>Maxillaire ()</term>
<term>Maxillaire (anatomopathologie)</term>
<term>Modèles anatomiques</term>
<term>Mâchoire édentée ()</term>
<term>Mâchoire édentée (anatomopathologie)</term>
<term>Méthode de Monte-Carlo</term>
<term>Planification des soins du patient ()</term>
<term>Pose d'implant dentaire endo-osseux ()</term>
<term>Pose d'implant dentaire endo-osseux (instrumentation)</term>
<term>Simulation numérique</term>
<term>Tomodensitométrie ()</term>
<term>Traitement d'image par ordinateur ()</term>
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<keywords scheme="MESH" type="chemical" qualifier="statistics & numerical data" xml:lang="en">
<term>Dental Implants</term>
</keywords>
<keywords scheme="MESH" qualifier="anatomopathologie" xml:lang="fr">
<term>Mandibule</term>
<term>Maxillaire</term>
<term>Mâchoire édentée</term>
</keywords>
<keywords scheme="MESH" qualifier="instrumentation" xml:lang="en">
<term>Dental Implantation, Endosseous</term>
</keywords>
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<term>Dental Implantation, Endosseous</term>
<term>Image Processing, Computer-Assisted</term>
<term>Tomography, X-Ray Computed</term>
</keywords>
<keywords scheme="MESH" qualifier="pathology" xml:lang="en">
<term>Jaw, Edentulous</term>
<term>Mandible</term>
<term>Maxilla</term>
</keywords>
<keywords scheme="MESH" qualifier="statistics & numerical data" xml:lang="en">
<term>Computer-Aided Design</term>
<term>Dental Implantation, Endosseous</term>
<term>Patient Care Planning</term>
<term>Surgery, Computer-Assisted</term>
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<keywords scheme="MESH" qualifier="surgery" xml:lang="en">
<term>Jaw, Edentulous</term>
<term>Mandible</term>
<term>Maxilla</term>
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<term>Models, Anatomic</term>
<term>Monte Carlo Method</term>
<term>User-Computer Interface</term>
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<term>Chirurgie assistée par ordinateur</term>
<term>Conception assistée par ordinateur</term>
<term>Humains</term>
<term>Implants dentaires</term>
<term>Interface utilisateur</term>
<term>Mandibule</term>
<term>Maxillaire</term>
<term>Modèles anatomiques</term>
<term>Mâchoire édentée</term>
<term>Méthode de Monte-Carlo</term>
<term>Planification des soins du patient</term>
<term>Pose d'implant dentaire endo-osseux</term>
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<front>
<div type="abstract" xml:lang="en">CAD/CAM template-guided surgery has gained attention as a method of improving the predictability of dental implant placement. However, due to possible variations during the manufacturing process and in the robustness of the template design, a virtual prediction of the potential positioning of the implants is needed.</div>
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<Month>10</Month>
<Day>29</Day>
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<Year>2010</Year>
<Month>07</Month>
<Day>12</Day>
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<ISSN IssnType="Electronic">1097-6841</ISSN>
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<Volume>104</Volume>
<Issue>1</Issue>
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<Year>2010</Year>
<Month>Jul</Month>
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<Title>The Journal of prosthetic dentistry</Title>
<ISOAbbreviation>J Prosthet Dent</ISOAbbreviation>
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<ArticleTitle>Virtual variation simulation of CAD/CAM template-guided surgeries performed on human cadavers: Part II.</ArticleTitle>
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<AbstractText Label="STATEMENT OF PROBLEM" NlmCategory="BACKGROUND">CAD/CAM template-guided surgery has gained attention as a method of improving the predictability of dental implant placement. However, due to possible variations during the manufacturing process and in the robustness of the template design, a virtual prediction of the potential positioning of the implants is needed.</AbstractText>
<AbstractText Label="PURPOSE" NlmCategory="OBJECTIVE">The purpose of this study was to perform virtual variation simulations on virtually planned implant placements and to compare them with corresponding results from actual surgeries performed on human cadavers in a previous study.</AbstractText>
<AbstractText Label="MATERIAL AND METHODS" NlmCategory="METHODS">Seventeen computer-aided plans were used for virtual variation simulation of surgeries conducted on 17 human cadavers and 145 implants placed in the cadavers. For each surgery, 10,000 virtual surgeries were performed, resulting in 1,450,000 implant placements. The results from the virtual variation simulations were statistically compared with the results from the actual surgeries. The Mann-Whitney U test was used to compare the implant distributions (alpha=.05).</AbstractText>
<AbstractText Label="RESULTS" NlmCategory="RESULTS">In the maxillae, the difference between the simulated average mean of the mean and the compared surgical average of the median was 0.22 mm (apex) and -0.35 mm (hex), and for the mandible, the corresponding values were -0.19 mm (apex) and -0.69 mm (hex). The simulated average mean of the range compared to the mean range of the maximum deviation results from the surgeries of the maxillae was 2.96 mm (apex) and 0.44 mm (hex), and 2.3 mm (apex) and 0.26 mm (hex) for the mandible. The implant distributions between the simulations and the surgeries were significantly different at both the hex (P<.001) and apex (P<.001).</AbstractText>
<AbstractText Label="CONCLUSIONS" NlmCategory="CONCLUSIONS">The implant distributions were neither static nor normally distributed. Thus, within the limitations of this study, the definitive geometrical variations of the implants were not static, as they depend on the individual anatomy of the jaws and the ability to place the CAD/CAM-guided surgical template in the proper position.</AbstractText>
<CopyrightInformation>Copyright 2010 The Editorial Council of the Journal of Prosthetic Dentistry. Published by Mosby, Inc. All rights reserved.</CopyrightInformation>
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