Finite element analysis of different loading conditions for implant-supported overdentures supported by conventional or mini implants.

scientific article published on 10 March 2017

Finite element analysis of different loading conditions for implant-supported overdentures supported by conventional or mini implants. is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1080/10255842.2017.1302432
P698PubMed publication ID28279083

P2093author name stringI Hasan
H Stark
C Bourauel
F Heinemann
K Solberg
L Keilig
P Pellikaan
P2860cites workLoss of osseointegration caused by occlusal load of oral implants. A clinical and radiographic study in monkeysQ34413955
Mini implants for definitive prosthodontic treatment: a systematic reviewQ38092277
Comparison of different designs of implant-retained overdentures and fixed full-arch implant-supported prosthesis on stress distribution in edentulous mandible--a computed tomography-based three-dimensional finite element analysisQ44559105
The impact of loads on standard diameter, small diameter and mini implants: a comparative laboratory studyQ44755618
Effect of different mucosa thickness and resiliency on stress distribution of implant-retained overdentures-2D FEA.Q47353695
Mini dental implants: an adjunct for retention, stability, and comfort for the edentulous patient.Q51332158
Influence of implant length and diameter on stress distribution: a finite element analysis.Q51719804
Pain and instability during biting with mandibular implant-retained overdentures.Q52068764
The effect of implant number and position on the stress behavior of mandibular implant retained overdentures: A three-dimensional finite element analysis.Q53266147
P433issue7
P304page(s)770-782
P577publication date2017-03-10
P1433published inComputer Methods in Biomechanics and Biomedical EngineeringQ15751255
P1476titleFinite element analysis of different loading conditions for implant-supported overdentures supported by conventional or mini implants.
P478volume20

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Q89288282Complete mechanical characterization of an external hexagonal implant connection: in vitro study, 3D FEM, and probabilistic fatiguecites workP2860

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