93
Views
1
CrossRef citations to date
0
Altmetric
Original Article

Surface structure of retrieved ICLH femoral cups

, , &
Pages 243-247 | Received 09 Mar 1997, Accepted 17 Feb 1998, Published online: 08 Jul 2009

References

  • Bauer T, Taylor S, Jiang M, Medendorp S. An indirect comparison of thirdbody wear in retrieved hydroxyapatite-coated, porous and cemented femoral components. Clin Orthop 1994; 298: 11–8
  • Betts F, Wright T, Salvati E, Brodskey A, Bansal M. Cobalt-alloy metal debris in periarticular tissues from total hip revision arthroplasties. Metal contents and associated histologic findings. Clin Orthop 1992; 276: 75–82
  • Dowson D, El-Hardy Diab M M, Gillis B J, Atkinson J R. Influence of counterface topography on the wear of ultrahigh molecular weight polyethylene under wet and dry conditions. Polymer wear and its control, L Lieng-Huang. American Chemical Society. 1985; 171–87
  • Hall R M, Unsworth A, Siney P, Wroblewski B M. The surface topography of retrieved femoral heads. J Mater Sci: Mater in Med 1996; 7: 739–44
  • Hardinge K. The direct lateral approach to the hip. J Bone Joint Surg (Br) 1982; 64(1)17–9
  • Haynes D R, Rogers S D, Hay S, Pearcy M J, Howie D W. The differences in toxicity and release of bone-resorbing mediators induced by titanium and cobalt-chromium-alloy wear particles. J Bone Joint Surg 1993; 6: 825–34
  • Isaac G H, Atkinson J R, Dowson D, Kennedy P D, Smith M R. The causes of femoral head roughening in explanted Charnley hip prostheses. Eng Med 1987; 16: 167–73
  • Livermore J, Ilstrup D, Morrey B. Effect of femoral head size on wear of the acetabular comonent. J Bone Joint Surg (Am) 1990; 72(4)518–28
  • Maloney W J, Smith L R, Castro F, Schurman D J. Fibroblast response to metallic debris in vitro. J Bone Joint Surg 1993; 6: 835–44
  • McKellop H, Clarke I, Markolf K, Amstutz H. Friction and wear properties of polymer, metal and ceramic prosthetic joint materials evaluated on a multichannel screening device. J Biomed Mater Res 1981; 15: 619–53
  • McKellop H, Sarmiento A, Schwinn C, Ebramzadeh E. In vivo wear of titanium-alloy hip prostheses. J Bone Joint Surg 1990; 72: 512–7
  • McKellop H, Røstlund T, Ebramzadeh E, Sarmiento A. Wear of titanium 6–4 alloy in laboratory tests and in retrieved human joint replacements. Medical application of titanium and its alloys: the material and biological issues, S A Brown, J E Lemons. ASTM STP 1272, American Society for Testing and Materials, Philadelphia, PA 1995
  • Reigstad A, Brandt M, Hetland K R. Total hip replacement with Miiller prosthesis and ICLH double cup. 2- to 6-year results of a prospective comparative study. Arch Orthop Trauma Surg 1986; 105: 175–82
  • Stout K, Sullivan P J, Dong W P, Mainsah E, Luo N, Mathia T, Zahouani H. The development of methods for the characterisation of roughness in three dimensions. Publication no. EUR 15178 En of the Commission of the European Communities, University of Birmingham, BirminghamUK 1993
  • Wennerberg A, Albrektsson T, Ulrich H, Krol J. An optical three-dimensional technique for topographical descriptions of surgical implants. J Biomed Eng 1992; 14: 412–8
  • Wennerberg A, Albrektsson T, Andersson B, Krol J. A histo-morphometric and removal torque study of screw-shaped titanium implants with three different surface topographies. Clin Oral Impl Res 1995a; 6: 24–30
  • Wennerberg A, Albrektsson T, Andersson B. An animal study of c.p. titanium screws with different surface topographies. J Mater Sci: Mater in Med 1995b; 6: 302–9
  • Wennerberg A, Albrektsson T, Johansson C, Andersson B. Experimental study of turned and gritblasted screw-shaped implants with special emphasis on effects of blasting materials and surface topography. Biomaterials 1996a; 17: 15–22
  • Wennerberg A, Albrektsson T, Andersson B. Bone tissue response to commercially pure titanium implants blasted with fine and coarse particles of aluminum oxide. J Oral Maxillofac Implants 1996b; 11: 38–45
  • Wennerberg A, Ohlsson R, Rosén B G, Andersson B. Characterizing 3D topography of engineering and biomaterial surfaces by confocal laser scanning and stylus techniques. Medical Eng Phys 1996c; 18: 548–56

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.