Hip implants fail for many reasons. One of these reasons is due to aseptic loosening which causes bone resorption. The paper is oriented to investigate functionally graded porous stems by incorporating unique porous structures. The porosity levels investigated varied between 0% (fully densed), to 90%. The functional graded function used was sigmoid power law with three grading exponents. The gradation scheme was decreasing the porosity distally. From this study, it was found that functionally graded porous stems in comparison to fully dense stems, transfers up to 170% of the stresses to the bone (reduce stress shielding) and have micromotion that supports bone in growth.Nelson Mandela Metropolitan University;University of Cape Town;Universi...
This study aims to create mathematical models (MMs) and maps that will facilitate personalized impla...
Titanium porous cellular microstructures are commonly used in bone mimetic implants. The orientation...
Abstract-A topology optimization program was applied to test the hypothesis that bone adaptation to ...
The main objective of this study is to design titanium alloy femoral stems with cubic porous structu...
Cementless hip prostheses with porous outer coating are commonly used to repair the proximally damag...
The main objective of this study is to design titanium alloy femoral stems with cubic porous structu...
Background: After total hip arthroplasty, there would be some problems for the patients. Implant loo...
Repetitive loads acting on the hip joint fluctuate according to the type of activities produced by t...
Introduction: Natural cancellous bone consists of inhomogeneous structures in which the porosity or ...
Highlights - CoCr graded femoral stems attain reduced bone-stress shielding, stability, and bone-equ...
Solid metallic hip implants have much higher stiffness than the femur bone, causing stress-shielding...
Functionally Graded Scaffolds (FGSs) are porous biomaterials where porosity changes in space with a ...
Introduction: The bone ingrowth depth in the porous scaffolds is greatly affected by the structural ...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...
This study aimed to develop a three-dimensional finite element model of a functionally graded femora...
This study aims to create mathematical models (MMs) and maps that will facilitate personalized impla...
Titanium porous cellular microstructures are commonly used in bone mimetic implants. The orientation...
Abstract-A topology optimization program was applied to test the hypothesis that bone adaptation to ...
The main objective of this study is to design titanium alloy femoral stems with cubic porous structu...
Cementless hip prostheses with porous outer coating are commonly used to repair the proximally damag...
The main objective of this study is to design titanium alloy femoral stems with cubic porous structu...
Background: After total hip arthroplasty, there would be some problems for the patients. Implant loo...
Repetitive loads acting on the hip joint fluctuate according to the type of activities produced by t...
Introduction: Natural cancellous bone consists of inhomogeneous structures in which the porosity or ...
Highlights - CoCr graded femoral stems attain reduced bone-stress shielding, stability, and bone-equ...
Solid metallic hip implants have much higher stiffness than the femur bone, causing stress-shielding...
Functionally Graded Scaffolds (FGSs) are porous biomaterials where porosity changes in space with a ...
Introduction: The bone ingrowth depth in the porous scaffolds is greatly affected by the structural ...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...
This study aimed to develop a three-dimensional finite element model of a functionally graded femora...
This study aims to create mathematical models (MMs) and maps that will facilitate personalized impla...
Titanium porous cellular microstructures are commonly used in bone mimetic implants. The orientation...
Abstract-A topology optimization program was applied to test the hypothesis that bone adaptation to ...