Hip implant retrieval analysis is the most important
source of insight into the performance of new materials and designs
of hip arthroplasties. Even the most rigorous in vitro testing will
not accurately simulate the behavior of implant materials and new
designs of prosthetic arthroplasties. Retrieval analysis has revealed
such factors as the effects of gamma-in-air sterilisation of polyethylene,
fatigue failure mechanisms of polymethylmethacrylate bone cement,
fretting corrosion of Morse taper junctions, third body wear effects
of both hard-on-hard and hard-on-soft bearing couples, and the effects
of impingement of components on the full spectrum of bearing surfaces,
none of which was predicted by pre-implantation in vitro testing
of these materials and combinations. The temporal sequence of the
retrieval process is approximately six years from first implantation
through retrieval analysis, laboratory investigation, and publication
of results, and thus, in addition to rigorous clinical evaluation,
represents the true development and insight cycle for new designs
and materials.