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STEM SUBSIDENCE AND DECREASE IN THE INITIAL RADIOLUCENCY OF THE BONE-CEMENT INTERFACE IN POLISHED TAPERED STEM



Abstract

Studies have reported stem subsidence without loosening in cemented polished tapered stems. And also, the initial radiolucency seen immediately after surgery at the bone-cement interface has decreased in some cases with polished tapered stem as time passed. The etiologies of these phenomena are not still elucidated. We made a comparative study on the relation between stem subsidence and the initial radiolucency in polished and rough surface stems.

Subjects were 42 hips of 38 cases and 36 hips of 31 cases received primary THA using a Collarless Polished Tapered (CPT) stem and a polymethylmethacrylate pre-coated (VerSys Cemented Plus) stem respectively. Three x-ray films taken within 2 months, at 6 months and a year after surgery were reviewed.

Stem subsidence was seen in 34 hips of 31 cases (81.0%) in the CPT group and averaged 0.72mm (range, 0–2.52mm) at a year after surgery. Decrease in the initial radiolucency was seen in 15 hips (35.7%) in the CPTgroup. Stem subsidence averaged 1.12mm (range, 0.46–2.52mm) and 0.48 mm(range, 0.00–1.91mm) in the cases with decrease in the initial radiolucency and in those without any change respectively. Stem subsidence was significantly greater in the cases with decrease in the initial radiolucency(P< 0.005). In the VerSys group, no stem subsidence was seen except in 1 case of mechanical failure with 0.65mm of subsidence. No decrease in the initial radiolucency was seen, either.

It has been reported that the decrease in the radiolucency as we showed was thought a dense appearance of cancellous bone by load transfer in other polished tapered stem. In this study, stem subsidence may have caused decrease in the initial radiolucency. It has a possibility that not only a dense appearance of cancellous bone but also cement creep caused decrease in the initial radiolucency.

Correspondence should be addressed to Richard Komistek, PhD, International Society for Technology in Arthroplasty, PO Box 6564, Auburn, CA 95604, USA. E-mail: ista@pacbell.net