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Implant‐supported mandibular splinting affects temporomandibular joint biomechanics

Identifieur interne : 003A33 ( Main/Exploration ); précédent : 003A32; suivant : 003A34

Implant‐supported mandibular splinting affects temporomandibular joint biomechanics

Auteurs : Balthasar Zaugg [Suisse] ; Christoph H. F. H Mmerle [Suisse] ; Sandro Palla [Suisse] ; Luigi M. Gallo [Suisse]

Source :

RBID : ISTEX:F5E62B478AAA1E4690514EAB616CE0C6F1FEB724

English descriptors

Abstract

Objectives: Mandibular functional movements lead to complex deformations of bony structures. The aim of this study was to test whether mandibular splinting influences condylar kinematics and temporomandibular joint (TMJ) loading patterns.

Url:
DOI: 10.1111/j.1600-0501.2011.02241.x


Affiliations:


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Le document en format XML

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<name sortKey="H Mmerle, Christoph H F" sort="H Mmerle, Christoph H F" uniqKey="H Mmerle C" first="Christoph H. F." last="H Mmerle">Christoph H. F. H Mmerle</name>
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<term>Curvilinear length</term>
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<term>Displacement vectors</term>
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<term>Edentulous subjects</term>
<term>Functional movements</term>
<term>Gadolinium spheres</term>
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<term>Goodkind heringlake</term>
<term>Greater effort</term>
<term>Hobkirk schwab</term>
<term>Image stacks</term>
<term>Implant</term>
<term>Implants research</term>
<term>Intercondylar distance</term>
<term>Intercuspation</term>
<term>International journal</term>
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<term>Lower right</term>
<term>Mandible</term>
<term>Mandibular</term>
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<term>Mandibular splinting</term>
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<term>Maximum intercuspation</term>
<term>Maximum opening</term>
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<term>Medial displacement</term>
<term>Mediolateral</term>
<term>Mediolateral dimension</term>
<term>Mediolateral displacement</term>
<term>Minimal distances</term>
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<term>Orofacial pain</term>
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<term>Polygon vertices approximating</term>
<term>Prosthetic dentistry</term>
<term>Removable prosthodontics</term>
<term>Right target frame</term>
<term>Right target frames</term>
<term>Software models</term>
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<term>Splinted condition</term>
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<term>Target frame</term>
<term>Target frames</term>
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<term>Trajectory</term>
<term>Unrestricted mandibles</term>
<term>Zaugg</term>
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<term>Angle variation</term>
<term>Articular surfaces</term>
<term>Average mediolateral displacement</term>
<term>Condylar</term>
<term>Condylar area</term>
<term>Condylar path</term>
<term>Condylar surface</term>
<term>Curvilinear length</term>
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<term>Displacement vectors</term>
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<term>Dynamic stereometry</term>
<term>Edentulous subjects</term>
<term>Functional movements</term>
<term>Gadolinium spheres</term>
<term>Gallo</term>
<term>Gates nicholls</term>
<term>Goodkind heringlake</term>
<term>Greater effort</term>
<term>Hobkirk schwab</term>
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<term>Implants research</term>
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<term>John wiley sons</term>
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<term>Lateral condylar poles</term>
<term>Loading patterns</term>
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<term>Lower right</term>
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<term>Mandibular deformation</term>
<term>Mandibular splinting</term>
<term>Masticatory disorders</term>
<term>Masticatory muscles</term>
<term>Maximum intercuspation</term>
<term>Maximum opening</term>
<term>Medial convergence</term>
<term>Medial displacement</term>
<term>Mediolateral</term>
<term>Mediolateral dimension</term>
<term>Mediolateral displacement</term>
<term>Minimal distances</term>
<term>Oral impl</term>
<term>Oral maxillofacial implants</term>
<term>Orofacial pain</term>
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<term>Removable prosthodontics</term>
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<front>
<div type="abstract">Objectives: Mandibular functional movements lead to complex deformations of bony structures. The aim of this study was to test whether mandibular splinting influences condylar kinematics and temporomandibular joint (TMJ) loading patterns.</div>
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