Design methodology for dental implant using approximate solution techniques
Author:
Publisher
Elsevier BV
Subject
Otorhinolaryngology,Oral Surgery,Surgery
Reference21 articles.
1. Dynamic modeling and simulation of dental implantin sertion process–A finite element study;Hong;Finite Elements in Analysis and Design,2011
2. Biomechanical optimization of the diameter of distraction screwing distraction implant by three-dimensional finite element analysis;Songhe;Computers in Biology and Medicine,2013
3. The effectiveness of element downsizing on a three-dimensional finite element model of bone trabeculae in implant biomechanics;Sato;Journal of Oral Rehabilation,1999
4. The influence of functional forces on the biomechanics of implant-supported prostheses-a review;Sahin;Journal of Dentistry,2002
5. Finite element analysis of the dental implant using a topology optimization;Chih;Medical Engineering & Physics,2012
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