Fracture in the hip joint is a major and quite common health issue, particularly for the elderly. The loads exploited by the lower limbs are very acute and severe; in the femur, they can be several folds higher than the whole weight of the body. Nanotechnology and nanocomposites offer great potential in biomedical applications. The organic materials are more biocompatible. Mechanical properties like strength and hardness are challenging parameters which control the selection of a joint. HDPE in its pure form has been successfully used as a prosthetic foot (external) but failed as an implant material due to limited mechanical properties. High-density polyethylene thermoplastic polymer (HDPE) and multi-walled carbon nanotubes (MWCNT)/Nano-Alu...
Reinforcement UHMWPE by nano additives represented by carbon nanotubes (CNTs) and nanohydroxyapatite...
Biomaterials are extensively used in bone defect recovery caused by bone diseases. Multi-walled carb...
The use of ceramic-on-ceramic (alumina- and zirconia-based) couplings in hip joint prostheses has be...
Fracture in the hip joint is a major and quite common health issue, particularly for the elderly. Th...
UltraHigh Molecular Weight Polyethylene (UHMWPE) is the most commonly used counter face in implants ...
Over the lifetime of a person, the function of the natural hip joint can be altered due to trauma or...
Polymer composites benefit joint prostheses and implants in biomaterials due to their high strength,...
Eight nano composites were prepared to use as an acetabular cup for hip joint implantation with a ma...
The healing of bone fractures naturally occurs without surgical intervention. Some damage and fractu...
Carbon nanotubes are highly versatile materials; new applications using them are continuously being ...
Osteolysis and aseptic loosening due to wear at the articulating interfacesof prosthetic joints are ...
The aim of this study was to investigate the in vivo biocompatibility in terms of healing of long se...
Osteolysis and aseptic loosening due to wear at the articulating interfaces of prosthetic joints are...
High density polyethylene/tricalcium phosphate/ultra high molecular weight polyethylene (TCP/HDPE/UH...
In this study, new composite formulation for biomedical applications was investigated. The effects o...
Reinforcement UHMWPE by nano additives represented by carbon nanotubes (CNTs) and nanohydroxyapatite...
Biomaterials are extensively used in bone defect recovery caused by bone diseases. Multi-walled carb...
The use of ceramic-on-ceramic (alumina- and zirconia-based) couplings in hip joint prostheses has be...
Fracture in the hip joint is a major and quite common health issue, particularly for the elderly. Th...
UltraHigh Molecular Weight Polyethylene (UHMWPE) is the most commonly used counter face in implants ...
Over the lifetime of a person, the function of the natural hip joint can be altered due to trauma or...
Polymer composites benefit joint prostheses and implants in biomaterials due to their high strength,...
Eight nano composites were prepared to use as an acetabular cup for hip joint implantation with a ma...
The healing of bone fractures naturally occurs without surgical intervention. Some damage and fractu...
Carbon nanotubes are highly versatile materials; new applications using them are continuously being ...
Osteolysis and aseptic loosening due to wear at the articulating interfacesof prosthetic joints are ...
The aim of this study was to investigate the in vivo biocompatibility in terms of healing of long se...
Osteolysis and aseptic loosening due to wear at the articulating interfaces of prosthetic joints are...
High density polyethylene/tricalcium phosphate/ultra high molecular weight polyethylene (TCP/HDPE/UH...
In this study, new composite formulation for biomedical applications was investigated. The effects o...
Reinforcement UHMWPE by nano additives represented by carbon nanotubes (CNTs) and nanohydroxyapatite...
Biomaterials are extensively used in bone defect recovery caused by bone diseases. Multi-walled carb...
The use of ceramic-on-ceramic (alumina- and zirconia-based) couplings in hip joint prostheses has be...