The design of dental superstructures influences the loading on dental implants and the deformation of the anterior interforaminal bone in an edentulous mandible. This deformation causes stress in the bone around the implants and may lead to bone resorption and loss of the implant. The stress distribution around dental implants in an edentulous mandible was calculated by means of a three-dimensional, finite-element model of the anterior part of the jaw. This model was built from data obtained from slices of a single human mandible and was provided with four endosseous implants in the interforaminal region. The implants were either connected with a bar or remained solitary. The solitary implants or the bars were loaded either uniformly or non...
dimensions on the stress distribution of implant-supported mandible utilizing 3D finite element anal...
Using the Finite Element Method some principal characteristics of the stress distribution caused by ...
This study's aims was to evaluate the stress distribution in a mandibular implant-supported prosthes...
The design of dental superstructures influences the loading on dental implants and the deformation o...
The design of dental superstructures influences the loading on dental implants and the deformation o...
The difference in stress distribution in the bone around dental implants was determined under condit...
The difference in stress distribution in the bone around dental implants was determined under condit...
The difference in stress distribution in the bone around dental implants was determined under condit...
The difference in stress distribution in the bone around dental implants was determined under condit...
Background/Purpose. This three-dimensional finite element study observed the stress distribution cha...
In this paper biomechanical interaction between osseointegrated dental implants and bone is numeric...
In this paper biomechanical interaction between osseointegrated dental implants and bone is numeric...
In this paper biomechanical interaction between osseointegrated dental implants and bone is numeric...
In this paper biomechanical interaction between osseointegrated dental implants and bone is numeric...
dimensions on the stress distribution of implant-supported mandible utilizing 3D finite element anal...
dimensions on the stress distribution of implant-supported mandible utilizing 3D finite element anal...
Using the Finite Element Method some principal characteristics of the stress distribution caused by ...
This study's aims was to evaluate the stress distribution in a mandibular implant-supported prosthes...
The design of dental superstructures influences the loading on dental implants and the deformation o...
The design of dental superstructures influences the loading on dental implants and the deformation o...
The difference in stress distribution in the bone around dental implants was determined under condit...
The difference in stress distribution in the bone around dental implants was determined under condit...
The difference in stress distribution in the bone around dental implants was determined under condit...
The difference in stress distribution in the bone around dental implants was determined under condit...
Background/Purpose. This three-dimensional finite element study observed the stress distribution cha...
In this paper biomechanical interaction between osseointegrated dental implants and bone is numeric...
In this paper biomechanical interaction between osseointegrated dental implants and bone is numeric...
In this paper biomechanical interaction between osseointegrated dental implants and bone is numeric...
In this paper biomechanical interaction between osseointegrated dental implants and bone is numeric...
dimensions on the stress distribution of implant-supported mandible utilizing 3D finite element anal...
dimensions on the stress distribution of implant-supported mandible utilizing 3D finite element anal...
Using the Finite Element Method some principal characteristics of the stress distribution caused by ...
This study's aims was to evaluate the stress distribution in a mandibular implant-supported prosthes...