Dynamic finite element simulation of dental prostheses during chewing using muscle equivalent force and trajectory approaches.

scientific article published on 29 March 2017

Dynamic finite element simulation of dental prostheses during chewing using muscle equivalent force and trajectory approaches. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1080/03091902.2017.1299231
P698PubMed publication ID28351224

P2093author name stringAlireza Karimi
Reza Razaghi
Hasan Biglari
P2860cites workThe development of the ITI DENTAL IMPLANT SYSTEM. Part 2: 1998-2000: Steps into the next millenniumQ34135545
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Loss of osseointegration caused by occlusal load of oral implants. A clinical and radiographic study in monkeysQ34413955
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Stress distribution in a post-restored tooth using the three-dimensional finite element methodQ39214652
Design of a custom angled abutment for dental implants using computer-aided design and nonlinear finite element analysisQ39927899
Dynamic finite element simulation of the gunshot injury to the human forehead protected by polyvinyl alcohol sponge.Q39990409
Step-wise analysis of the dental implant insertion process using the finite element techniqueQ40143901
Dynamic simulation and finite element analysis of the human mandible injury protected by polyvinyl alcohol spongeQ40210376
A method to predict muscle control in the kinematically and mechanically indeterminate human masticatory systemQ40691302
Modelling of forces in the human masticatory system with optimization of the angulations of the joint loadsQ40980200
Modeling the mechanical behavior of the jaws and their related structures by finite element (FE) analysisQ41377956
Medial pterygoid muscle activity during the closing and compressive phases of human masticationQ42671066
The transfer of occlusal forces through the maxillary molars: A finite element studyQ47973505
Anatomically based modelling of the human skull and jaw.Q48478837
An experimental-finite element analysis on the kinetic energy absorption capacity of polyvinyl alcohol spongeQ48765540
Computing the influences of different Intraocular Pressures on the human eye components using computational fluid-structure interaction model.Q50540555
Computing the stresses and deformations of the human eye components due to a high explosive detonation using fluid-structure interaction model.Q50716105
Comparative evaluation of implant designs: influence of diameter, length, and taper on strains in the alveolar crest. A three-dimensional finite-element analysis.Q51367545
Biphasic finite element simulation of the TMJ disc from in vivo kinematic and geometric measurements.Q51610633
The influence of implant location and length on stress distribution for three-unit implant-supported posterior cantilever fixed partial dentures.Q51694602
The influence of occlusal loading location on stresses transferred to implant-supported prostheses and supporting bone: A three-dimensional finite element study.Q51711140
Tooth displacement due to occlusal contacts: a three-dimensional finite element study.Q51926714
Three-dimensional finite-element model of the human temporomandibular joint disc during prolonged clenching.Q52005189
Three-dimensional finite element analysis of human temporomandibular joint with and without disc displacement during jaw opening.Q52088840
A finite element analysis of the human temporomandibular joint.Q52367162
P433issue4
P304page(s)314-324
P577publication date2017-03-29
P1433published inJournal of Medical Engineering & TechnologyQ6295523
P1476titleDynamic finite element simulation of dental prostheses during chewing using muscle equivalent force and trajectory approaches.
P478volume41

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cites work (P2860)
Q90976698A porous fibrous hyperelastic damage model for human periodontal ligament: Application of a microcomputerized tomography finite element model
Q92211778Comparative study of stress characteristics in surrounding bone during insertion of dental implants of three different thread designs: A three-dimensional dynamic finite element study