A new Stratified Approach For Enhanced Reliability (SAFER) pre-clinical simulation testing of joint prostheses is presented in this article. The aim of this approach is preclinical systematic testing of wear performance in the much wider envelope of conditions found clinically rather than relying only on the standard testing conditions that are currently used. The approach includes variations in surgical delivery, variations in kinematics, variations in the patient population and degradation of the biomaterial properties. Clinical experience of existing prostheses has been used to validate the new in vitro methods
A more robust pre-clinical wear simulation framework is required in order to simulate wider and high...
Aseptic loosening and periprosthetic osteolysis are the most common complications (5-10% in 10 years...
Innovations in Orthopaedics and Traumatology have contributed to the achievement of a high-quality l...
AbstractA new Stratified Approach For Enhanced Reliability (SAFER) pre-clinical simulation testing o...
Medley, J. B. (2016). Can physical joint simulators be used to anticipate clinical wear problems of ...
THESIS 5892Current state of the art testing methods do not allow implant performance to be assessed ...
Advancements in knee replacement design, material and sterilisation processes have provided improved...
Total joint replacement is becoming a clinical commonplace. The hip is now often replaced, the knee ...
ABSTRACT: Using the traditional tribological wear tests it is not possible to completely verify the ...
Wear is a key factor affecting the survivorship of artificial hip joints. Joint wear testers, as cal...
To investigate the biomechanical effect of skeletal knee joint abnormalities, the authors propose to...
Hip joint simulators are used extensively for preclinical testing of hip replacements. The variation...
Instability of total hip and knee replacements prevails as major complication. As measurements in pa...
Wear is a key factor affecting the survivorship of artificial hip joints. Joint wear testers, as cal...
Experimental testing is widely used to predict wear of total knee replacement (TKR) devices. Computa...
A more robust pre-clinical wear simulation framework is required in order to simulate wider and high...
Aseptic loosening and periprosthetic osteolysis are the most common complications (5-10% in 10 years...
Innovations in Orthopaedics and Traumatology have contributed to the achievement of a high-quality l...
AbstractA new Stratified Approach For Enhanced Reliability (SAFER) pre-clinical simulation testing o...
Medley, J. B. (2016). Can physical joint simulators be used to anticipate clinical wear problems of ...
THESIS 5892Current state of the art testing methods do not allow implant performance to be assessed ...
Advancements in knee replacement design, material and sterilisation processes have provided improved...
Total joint replacement is becoming a clinical commonplace. The hip is now often replaced, the knee ...
ABSTRACT: Using the traditional tribological wear tests it is not possible to completely verify the ...
Wear is a key factor affecting the survivorship of artificial hip joints. Joint wear testers, as cal...
To investigate the biomechanical effect of skeletal knee joint abnormalities, the authors propose to...
Hip joint simulators are used extensively for preclinical testing of hip replacements. The variation...
Instability of total hip and knee replacements prevails as major complication. As measurements in pa...
Wear is a key factor affecting the survivorship of artificial hip joints. Joint wear testers, as cal...
Experimental testing is widely used to predict wear of total knee replacement (TKR) devices. Computa...
A more robust pre-clinical wear simulation framework is required in order to simulate wider and high...
Aseptic loosening and periprosthetic osteolysis are the most common complications (5-10% in 10 years...
Innovations in Orthopaedics and Traumatology have contributed to the achievement of a high-quality l...