1,848
Views
9
CrossRef citations to date
0
Altmetric
Articles

Cementing of the hip arthroplasty stem increases load-to-failure force: a cadaveric study

, , , , , & show all

  • Abdel M P, Watts C D, Houdek M T, Lewallen D G, Berry D J. Epidemiology of periprosthetic fracture of the femur in 32 644 primary total hip arthroplasties: a 40-year experience. Bone Joint J 2016; 98-B(4): 461–7.
  • Aro E, Alm J J, Moritz N, Mattila K, Aro H T. Good stability of a cementless, anatomically designed femoral stem in aging women: a 9-year RSA study of 32 patients. Acta Orthop 2018; 89(5): 490–5.
  • Carli A V, Negus J J, Haddad F S. Periprosthetic femoral fractures and trying to avoid them: what is the contribution of femoral component design to the increased risk of periprosthetic femoral fracture? Bone Joint J 2017; 99-B(1 Suppl. A): 50–9.
  • Carlson S W, Liu S S, Callaghan J J. Not all cementless femoral stems are created equal but the results may be comparable. Bone Joint J 2017; 99-B(1 Suppl. A): 14–17.
  • Cook R E, Jenkins PJ, Walmsley P J, Patton J T, Robinson C M. Risk factors for Periprosthetic Fractures of the Hip: A Survivorship Analysis. Clin Orthop Relat Res 2008; 466(7): 1652–6.
  • Erhardt J B, Khoo P P, Stoffel K K, Yates P J. Periprosthetic fractures around polished collarless cemented stems: the effect of stem design on fracture pattern. Hip Int 2013; 23(5): 459–64.
  • Flatøy B, Röhrl S M, Bøe B, Nordsletten L. No medium-term advantage of electrochemical deposition of hydroxyapatite in cementless femoral stems. 5-year RSA and DXA results from a randomized controlled trial. Acta Orthop 2016; 87(1): 42–7
  • Foster A P, Thompson N W, Wong J, Charlwood A P. Periprosthetic femoral fracture: a comparison between cemented and uncemented hemiarthroplasties. Injury 2005; 36(3): 424–9.
  • Fottner A, Woiczinski M, Kistler M, Schröder C, Schmidutz T F, Jansson V, Schmidutz F. Influence of undersized cementless hip stems on primary stability and strain distribution. Arch Orthop Trauma Surg 2017; 137(10): 1435–41.
  • Ginsel B L, Morishima T, Wilson L J, Whitehouse S L, Crawford R W. Can larger-bodied cemented femoral components reduce periprosthetic fractures? A biomechanical study. Arch Orthop Trauma Surg 2015; 135(4): 517–22.
  • Hailer N P, Garellick G, Kärrholm J. Uncemented and cemented primary total hip arthroplasty in the Swedish Hip Arthroplasty Register. Acta Orthop 2010; 81(1): 34–41.
  • Inngul C, Blomfeldt R, Ponzer S, Enocson A. Cemented versus uncemented arthroplasty in patients with a displaced fracture of the femoral neck: a randomised controlled trial. Bone Joint J 2015; 97-B(11): 1475–80.
  • Jämsen E, Eskelinen A, Peltola M, Mäkelä K. High early failure rate after cementless hip replacement in the octogenarian. Clin Orthop Relat Res 2014; 472(9): 2779–89.
  • Kazi H A, Whitehouse S L, Howell J R, Timperley A J. Not all cemented hips are the same: a register-based (NJR) comparison of taper-slip and composite beam femoral stems. Acta Orthop 2019; 90(3): 214–9.
  • Khanuja H S, Vakil J J, Goddard M S, Mont M A. Cementless femoral fixation in total hip arthroplasty. J Bone Joint Surg Am 2011; 93(5): 500–9.
  • Kiran M, Johnston L R, Sripada S, Mcleod G G, Jariwala A C. Cemented total hip replacement in patients under 55 years. Acta Orthop 2018;89(2): 152–5.
  • Klasan A, Sen A, Dworschak P, El-Zayat B F, Ruchholtz S, Schuettler K F, Schmitt J, Heyse T J. Ten-year follow-up of a cemented tapered stem. Arch Orthop Trauma Surg 2018; 138(9): 1317–22.
  • Langslet E, Frihagen F, Opland V, Madsen J E, Nordsletten L, Figved W. Cemented versus uncemented hemiarthroplasty for displaced femoral neck fractures: 5-year followup of a randomized trial. Clin Orthop Relat Res 2014; 472(4): 1291–9.
  • Lehil M S, Bozic K J. Trends in total hip arthroplasty implant utilization in the United States. J Arthroplasty 2014; 29(10): 1915–8.
  • Li M G, Rohrl S M, Wood D J, Nivbrant B. Periprosthetic changes in bone mineral density in 5 stem designs 5 years after cemented total hip arthroplasty. No relation to stem migration. J Arthroplasty 2007; 22(5): 689–91.
  • Lindberg-Larsen M, Jørgensen C C, Solgaard S, Kjersgaard A G, Kehlet H, on behalf of the LFC for F-T, Group KRC. Increased risk of intraoperative and early postoperative periprosthetic femoral fracture with uncemented stems. Acta Orthop 2017; 88(4): 390–4.
  • McMinn D J W, Snell K I E, Daniel J, Treacy R B C, Pynsent P B, Riley R D. Mortality and implant revision rates of hip arthroplasty in patients with osteoarthritis: registry based cohort study. BMJ 2012; 344: e3319.
  • Morishima T, Ginsel B L, Choy G G, Wilson L J, Whitehouse S L, Crawford R W. Periprosthetic fracture torque for short versus standard cemented hip stems: an experimental in vitro study. J Arthroplasty 2014; 29(5): 1067–71.
  • Moskal J T, Capps S G, Scanelli J A. Still no single gold standard for using cementless femoral stems routinely in total hip arthroplasty. Arthroplasty Today 2016; 2(4): 211–18.
  • Palan J, Smith M C, Gregg P, Mellon S, Kulkarni A, Tucker K, Blom A W, Murray D W, Pandit H. The influence of cemented femoral stem choice on the incidence of revision for periprosthetic fracture after primary total hip arthroplasty: an analysis of national joint registry data. Bone Joint J 2016; 98-B(10): 1347–54.
  • Peters R M, Van Steenbergen L N, Stevens M, Rijk P C, Bulstra S K, Zijlstra W P. The effect of bearing type on the outcome of total hip arthroplasty. Acta Orthop 2018; 89(2): 163–9.
  • Phillips J R A, Moran C G, Manktelow A R J. Periprosthetic fractures around hip hemiarthroplasty performed for hip fracture. Injury 2013; 44(6): 757–62.
  • Sabharwal S, Wilson H, Reilly P, Gupte C M. Heterogeneity of the definition of elderly age in current orthopaedic research. Springerplus. 2015; 4.
  • Scheerlinck T, Casteleyn P-P. The design features of cemented femoral hip implants. J Bone Joint Surg Br 2006; 88(11): 1409–18.
  • Sheth N P, Brown N M, Moric M, Berger R A, Della Valle C J. Operative treatment of early peri-prosthetic femur fractures following primary total hip arthroplasty. J Arthroplasty 2013; 28(2): 286–91.
  • Sidler-Maier C C, Waddell J P. Incidence and predisposing factors of periprosthetic proximal femoral fractures: a literature review. Int Orthop 2015; 39(9): 1673–82.
  • Thien T M, Chatziagorou G, Garellick G, Furnes O, Havelin L I, Mäkelä K, Overgaard S, Pedersen A, Eskelinen A, Pulkkinen P, Kärrholm J. Periprosthetic femoral fracture within two years after total hip replacement: analysis of 437,629 operations in the Nordic Arthroplasty Register Association database. J Bone Joint Surg Am 2014; 96(19): e167.
  • Topp T, Müller T, Huss S, Kann P H, Weihe E, Ruchholtz S, Zettl R P. Embalmed and fresh frozen human bones in orthopedic cadaveric studies: which bone is authentic and feasible? Acta Orthop 2012; 83(5): 543–7.
  • Walpole SC, Prieto-Merino D, Edwards P, Cleland J, Stevens G, Roberts I. The weight of nations: an estimation of adult human biomass. BMC Public Health 2012; 12: 439.
  • Wright N C, Looker AC, Saag K G, Curtis J R, Delzell E S, Randall S, Dawson-Hughes B. The recent prevalence of osteoporosis and low bone mass in the United States based on bone mineral density at the femoral neck or lumbar spine. J Bone Miner Res 2014; 29(11): 2520–6.