Investigation of wear of knee prostheses in a new displacement/force-controlled simulator

Author:

Barnett P I1,McEwen H M J1,Auger D D2,Stone M H3,Ingham E4,Fisher J1

Affiliation:

1. University of Leeds Department of Mechanical Engineering UK

2. DePuy International Leeds, UK

3. Leeds General Infirmary Department of Orthopaedic Surgery Leeds, UK

4. University of Leeds, The Old Medical School Division of Microbiology Leeds, UK

Abstract

The performance of two knee simulators designed by ProSim (Manchester, UK) was evaluated by comparison of the wear seen in the press-fit condylar (PFC) Sigma (DePuy) knee prosthesis. Twelve specimens of the same design and manufacturing specification, were subjected to a wear test of 2 ×106 cycles duration using bovine serum as a lubricant. The anterior/posterior displacement and internal/external rotation inputs were based on the kinematics of the natural knee. International Standards Organization (ISO) standards were used for the flexion and axial load. The wear rates and wear scar areas were compared across all stations. The mean wear rates found were 17.6 ± 5 mm3/106 cycles for stations 1 to 6 and 19.6 ± 4 mm3/106 cycles for stations 7 to 12, resulting in an overall mean wear rate of 18.1 ± 3 mm3/106 cycles. The differences between the two simulators were not significant. The average wear scar area seen on inserts from stations 1 to 6 was calculated at 32.4 ± 1 per cent of the intended articulating surface. Similarly on stations 7 to 12 the average wear scar area was 30.7 ± 3 per cent. The wear scars seen were a good physiological representation of those found from clinical explant data. This study has shown good repeatability from the simulator, both within and between the simulators.

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Medicine

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