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PreviewIssue DateTitleAuthor(s)
2017Proximal translation of > 1 mm within the first two years of revision total hip arthroplasty correctly predicts whether or not an acetabular component is loose in 80% of cases: a case-control study with confirmed intra-operative outcomesKim, Y.; Abrahams, J.; Callary, S.; De Ieso, C.; Costi, K.; Howie, D.; Solomon, L.
2015Wear of highly crosslinked polyethylene acetabular components: a review of RSA studiesCallary, S.; Solomon, L.; Holubowycz, O.; Campbell, D.; Munn, Z.; Howie, D.
1998Variation in cytokines induced by particles from different prosthetic materialsHaynes, D.; Boyle, S.; Rogers, S.; Howie, D.; Vernon-Roberts, B.
2013Posterolateral and anterolateral approaches to unicondylar posterolateral tibial plateau fractures: a comparative studySolomon, L.; Stevenson, A.; Lee, Y.; Baird, R.; Howie, D.
2006The correlation of RANK, RANKL and TNF╬▒ expression with bone loss volume and polyethylene wear debris around hip implantsHolding, C.; Findlay, D.; Stamenkov, R.; Neale, S.; Lucas, H.; Dharmapatni, A.; Callary, S.; Shrestha, K.; Atkins, G.; Howie, D.; Haynes, D.
2013Periprosthetic osteolysis after total hip replacement: molecular pathology and clinical managementHowie, D.; Neale, S.; Haynes, D.; Holubowycz, O.; McGee, M.; Solomon, L.; Callary, S.; Atkins, G.; Findlay, D.
2008Primary human osteoblasts grow into porous tantalum and maintain an osteoblastic phenotypeWelldon, K.; Atkins, G.; Howie, D.; Finlay, D.
2011Role of polyethylene particles in peri-prosthetic osteolysis: A reviewAtkins, G.; Haynes, D.; Howie, D.; Findlay, D.
2002Periprosthetic osteolysis is associated with wear particles stimulating factors that control osteoclast formationAtkins, G.; Crotti, T.; Loric, M.; Findlay, D.; Howie, D.; Bain, G.; Haynes, D.
1999A Comparison of Different Surgical Approaches for the Periacetabular OsteotomyHussell, G.; Mast, J.; Mayo, K.; Howie, D.; Reinhold, G.