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Research Article

The long-term in vivo behavior of polymethyl methacrylate bone cement in total hip arthroplasty

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Pages 553-558 | Received 01 Feb 2011, Accepted 28 Jun 2011, Published online: 24 Nov 2011

  • Apostolou CD, Yiannakopoulos CK, Ioannidis TT, Papagelopoulos PJ, Korres D. Mechanical stability of total hip replacement using pressurization of bone cement during curing: push-out tests in cadaver femora. Orthopedics 2007; 30 (12): 1028-32.
  • Bayne SC, Lautenschlager EP, Compere CL, Wildes R. Degree of polymerization of acrylic bone cement. J Biomed Mater Res 1975; 9 (1): 27-34.
  • Carrington NC, Sierra RJ, Gie GA, Hubble MJ, Timperley AJ, Howell JR. The Exeter Universal cemented femoral component at 15 to 17 years: an update on the first 325 hips. J Bone Joint Surg (Br) 2009; 91 (6): 730-7.
  • Chaplin RP, Lee AJ, Hooper RM, Clarke M. The mechanical properties of recovered PMMA bone cement: a preliminary study. J Mater Sci Mater Med 2006; 17 (12): 1433-48
  • Dall GF, Simpson PM, Mackenzie SP, Breusch SJ. Inter- and intra-batch variability in the handling characteristics and viscosity of commonly used antibiotic-loaded bone cements. Acta Orthop 2007; 78 (3): 412-20
  • Fernandez-Fairen M, Vazquez JJ. The aging of polymethyl methacrylate bone cement. Acta Orthop Belg 1983; 49 (4): 512-20.
  • Gardiner RC, Hozack WJ. Failure of the cement-bone interface. A consequence of strengthening the cement-prosthesis interface? J Bone Joint Surg (Br) 1994; 76(1): 49-52.
  • Graham J, Pruitt L, Ries M, Gundiah N. Fracture and fatigue properties of acrylic bone cement: the effects of mixing method, sterilization treatment, and molecular weight. J Arthroplasty 2000; 15 (8): 1028-35.
  • Graham J, Ries M, Pruitt L. Effect of bone porosity on the mechanical integrity of the bone-cement interface. J Bone Joint Surg (Am) 2003; 85 (10): 1901-8.
  • Hoey D, Taylor D. Quantitative analysis of the effect of porosity on the fatigue strength of bone cement. Acta Biomater 2009; 5 (2): 719-26
  • Hughes KF, Ries MD, Pruitt LA. Structural degradation of acrylic bone cements due to in vivo and simulated aging. J Biomed Mater Res A 2003; 65 (2): 126-35.
  • James SP, Jasty M, Davies J, Piehler H, Harris WH. A fractographic investigation of PMMA bone cement focusing on the relationship between porosity reduction and increased fatigue life. J Biomed Mater Res 1992; 26 (5): 651-62.
  • Lewis G. Properties of acrylic bone cement: state of the art review. J Biomed Mater Res 1997; 38 (2): 155-82.
  • Looney MA, Park JB. Molecular and mechanical property changes during aging of bone cement in vitro and in vivo. J Biomed Mater Res 1986; 20 (5): 555-63.
  • Madey SM, Callaghan JJ, Olejniczak JP, Goetz DD, Johnston RC. Charnley total hip arthroplasty with use of improved techniques of cementing. The results after a minimum of fifteen years of follow-up. J Bone Joint Surg (Am) 1997; 79 (1): 53-64.
  • Noble PC, Collier MB, Maltry JA, Kamaric E, Tullos HS. Pressurization and centralization enhance the quality and reproducibility of cement mantles. Clin Orthop 1998; (355): 77-89.
  • Ong A, Wong KL, Lai M, Garino JP, Steinberg ME. Early failure of precoated femoral components in primary total hip arthroplasty. J Bone Joint Surg (Am) 2002; 84 (5): 786-92.
  • Ries MD, Young E, Al-Marashi L, Goldstein P, Hetherington A, Petrie T, Pruitt L. In vivo behavior of acrylic bone cement in total hip arthroplasty. Biomaterials 2006; 27 (2): 256-61.
  • Scheerlinck T, Casteleyn PP. The design features of cemented femoral hip implants. J Bone Joint Surg (Br) 2006; 88 (11): 1409-18.
  • Shinzato S, Nakamura T, Ando K, Kokubo T, Kitamura Y. Mechanical properties and osteoconductivity of new bioactive composites consisting of partially crystallized glass beads and poly(methyl methacrylate). J Biomed Mater Res 2002; 60 (4): 556-63
  • Wang JS, Franzen H, Jonsson E, Lidgren L. Porosity of bone cement reduced by mixing and collecting under vacuum. Acta Orthop Scand 1993; 64 (2): 143-6.
  • Weinstein AM, Bingham DN, Sauer BW, Lunceford EM. The effect of high pressure insertion and antibiotic inclusions upon the mechanical properties of polymethylmethacrylate. Clin Orthop 1976; (121): 67-73.
  • Wroblewski BM, Siney PD, Fleming PA. Charnley low-frictional torque arthroplasty: follow-up for 30 to 40 years. J Bone Joint Surg (Br) 2009; 91 (4): 447-50.