The long-term success of artificial-joint replacement depends partly on the chances for acrylic cement failure and interface disruption. These chances can be diminished by an optimal load-transfer mechanism, whereby stress concentrations are avoided. The present paper introduces a method for numerical shape optimization, whereby the finite element method is used iteratively to determine optimal prosthetic designs, which minimize interface stresses. The method is first applied in a simplified one-dimensional model of a cemented femoral stem fixation, using acrylic cement. The results show that 30-70% cement and interface stress reductions can be obtained in principle with an optimized design. Although the actual optimal shape is susceptible ...
The orthopedic market offers more than 200 hundred different femoral stems, some with scientific pu...
Background: After total hip arthroplasty, there would be some problems for the patients. Implant loo...
With particular interest on total hip arthroplasty (THA), optimization of orthopedic prostheses is e...
The long-term success of artificial-joint replacement depends partly on the chances for acrylic ceme...
Artificial joints have two distinct functions. Firstly, to provide for an adequate range of motion, ...
The designer of a cementless hip stem in total hip replacement must find a balance between two confl...
A numerical optimization procedure has been applied for the shape optimal design of a femoral head s...
The designer of a cementless hip stem in total hip replacement must find a balance between two confl...
Planted articular joints replace bone articulation allowing the transfer of loads and articular disp...
The artificial replaced hip joint represents the major success story in orthopedic surgery in the tw...
The average life expectancy of many people undergoing total hip replacement (THR) exceeds twenty-fiv...
In the total hip prosthesis, according to different positions of the patient, there are a variety of...
Shape optimization problems applied in the field of biomechanics are presented. Particularly the sha...
Loosening of total joint replacements continues to be a major mode of failure in cemented total join...
The orthopedic market offers more than 200 hundred different femoral stems, some with scientific pu...
Background: After total hip arthroplasty, there would be some problems for the patients. Implant loo...
With particular interest on total hip arthroplasty (THA), optimization of orthopedic prostheses is e...
The long-term success of artificial-joint replacement depends partly on the chances for acrylic ceme...
Artificial joints have two distinct functions. Firstly, to provide for an adequate range of motion, ...
The designer of a cementless hip stem in total hip replacement must find a balance between two confl...
A numerical optimization procedure has been applied for the shape optimal design of a femoral head s...
The designer of a cementless hip stem in total hip replacement must find a balance between two confl...
Planted articular joints replace bone articulation allowing the transfer of loads and articular disp...
The artificial replaced hip joint represents the major success story in orthopedic surgery in the tw...
The average life expectancy of many people undergoing total hip replacement (THR) exceeds twenty-fiv...
In the total hip prosthesis, according to different positions of the patient, there are a variety of...
Shape optimization problems applied in the field of biomechanics are presented. Particularly the sha...
Loosening of total joint replacements continues to be a major mode of failure in cemented total join...
The orthopedic market offers more than 200 hundred different femoral stems, some with scientific pu...
Background: After total hip arthroplasty, there would be some problems for the patients. Implant loo...
With particular interest on total hip arthroplasty (THA), optimization of orthopedic prostheses is e...