The effect of loading and boundary conditions on patellar mechanics is significant due to the complications arising in patella femoral joints during total knee replacements. To understand the patellar mechanics with respect to loading and motion, a computational model representing the patella femoral joint was developed and validated against experimental results. The computational model was created in IDEAS NX and simulated in MSC ADAMS/VIEW software. The results obtained in the form of internal external rotations and anterior posterior displacements for a new and experimentally simulated specimen for patella femoral joint under standard gait condition were compared with experimental measurements performed on the Leeds ProSim knee simulator...
Total knee replacement (TKR) is one of the most performed orthopedic surgeries to treat knee joint d...
Objectives : Malrotation of the femoral component can result in post-operative complications in tota...
A three-dimensional (3D) knee joint computational model was developed and validated to predict knee ...
The patellofemoral joint represents one of the most challenging musculoskeletal systems to understan...
Total knee replacement remains the final treatment for patients suffering from knee arthritis and pr...
Many people suffer from knee pain due to abnormal function of the patellofemoral joint and are not a...
The patellofemoral joint (PFJ) plays an important role in the extensor mechanism of the knee. Severa...
Evaluating total knee replacement kinematics and contact pressure distributions is an important elem...
The fundamental objectives of patello-femoral joint biomechanics include the determination of its ki...
Three-dimensional mathematical models of the tibio-femoral joint require input of the geometry of ar...
The main objective of this research was to validate the Next Generation Knee Simulator (NGKS) as an ...
Total knee replacement benefits patients who suffer from severe knee pain or joint stiffness and oth...
Total knee replacement (TKR) is one of the most performed orthopedic surgeries to treat knee joint d...
OBJECTIVE: The objective of this study is to analyze the biomechanics of the patellar component foll...
Total knee replacement (TKR) is one of the most performed orthopedic surgeries to treat knee joint d...
Objectives : Malrotation of the femoral component can result in post-operative complications in tota...
A three-dimensional (3D) knee joint computational model was developed and validated to predict knee ...
The patellofemoral joint represents one of the most challenging musculoskeletal systems to understan...
Total knee replacement remains the final treatment for patients suffering from knee arthritis and pr...
Many people suffer from knee pain due to abnormal function of the patellofemoral joint and are not a...
The patellofemoral joint (PFJ) plays an important role in the extensor mechanism of the knee. Severa...
Evaluating total knee replacement kinematics and contact pressure distributions is an important elem...
The fundamental objectives of patello-femoral joint biomechanics include the determination of its ki...
Three-dimensional mathematical models of the tibio-femoral joint require input of the geometry of ar...
The main objective of this research was to validate the Next Generation Knee Simulator (NGKS) as an ...
Total knee replacement benefits patients who suffer from severe knee pain or joint stiffness and oth...
Total knee replacement (TKR) is one of the most performed orthopedic surgeries to treat knee joint d...
OBJECTIVE: The objective of this study is to analyze the biomechanics of the patellar component foll...
Total knee replacement (TKR) is one of the most performed orthopedic surgeries to treat knee joint d...
Objectives : Malrotation of the femoral component can result in post-operative complications in tota...
A three-dimensional (3D) knee joint computational model was developed and validated to predict knee ...