Introduction: Introduction: Few studies have investigated the distribution of stress around implants. In this study the distribution of stress in bones around implants was investigated in five overdenture (OD) treatment designs including OD-1, OD-2, OD-3, OD-4 and OD-5. Materials and methods: The Catia modeling software was used in order to simulate the tooth/implant model and bone. First, the borders of cancellous and cortical bone in each section of the CT images were attained by Photoshop software. Then, modeling softwares SolidWorks and NUMBER were applied to make the final three-dimensional model of jaw. Finally, the amount of stress on the surface of bone/implant was studied by means of stress analysis software (Ansys v11.0). Results:...
Objective: Aim of study was to develop two finite element models of one-piece implants of different ...
Background: Understanding how clinical variables affect stress distribution facilitates optimal pros...
Background:Understanding how clinical variables affect stress distribution facilitates optimal prost...
Objectives: This 3D-finite elements method study evaluated the effect of bone resorption on the stre...
In this project, the effects of bone quantity and bone quality on stress distributions in a maxillar...
This study aimed to compare the influence of single-standing or connected implants on stress distrib...
Objective: This study aimed to evaluate stress patterns generated within implant-supported mandibula...
Background: The aim of this study is to compare stress patterns induced by ball attachments when use...
Background: It has been well known that the success of mandibular implant- retained overdenture heav...
Purpose The main objective of this study was to investigate the influence of implant design, bone ty...
Purpose The main objective of this study was to investigate the influence of implant design, bone ty...
AbstractObjectiveThis study aimed to evaluate stress patterns generated within implant-supported man...
Background: Understanding how clinical variables affect stress distribution facilitates optimal pros...
This finite element analysis compared stress distribution on complete dentures and implant-retained ...
Background: Understanding how clinical variables affect stress distribution facilitates optimal pros...
Objective: Aim of study was to develop two finite element models of one-piece implants of different ...
Background: Understanding how clinical variables affect stress distribution facilitates optimal pros...
Background:Understanding how clinical variables affect stress distribution facilitates optimal prost...
Objectives: This 3D-finite elements method study evaluated the effect of bone resorption on the stre...
In this project, the effects of bone quantity and bone quality on stress distributions in a maxillar...
This study aimed to compare the influence of single-standing or connected implants on stress distrib...
Objective: This study aimed to evaluate stress patterns generated within implant-supported mandibula...
Background: The aim of this study is to compare stress patterns induced by ball attachments when use...
Background: It has been well known that the success of mandibular implant- retained overdenture heav...
Purpose The main objective of this study was to investigate the influence of implant design, bone ty...
Purpose The main objective of this study was to investigate the influence of implant design, bone ty...
AbstractObjectiveThis study aimed to evaluate stress patterns generated within implant-supported man...
Background: Understanding how clinical variables affect stress distribution facilitates optimal pros...
This finite element analysis compared stress distribution on complete dentures and implant-retained ...
Background: Understanding how clinical variables affect stress distribution facilitates optimal pros...
Objective: Aim of study was to develop two finite element models of one-piece implants of different ...
Background: Understanding how clinical variables affect stress distribution facilitates optimal pros...
Background:Understanding how clinical variables affect stress distribution facilitates optimal prost...