Skip to main content
Top
Published in:
Cover of the book

2018 | OriginalPaper | Chapter

Short History of Biomaterials Used in Hip Arthroplasty and Their Modern Evolution

Authors : Saverio Affatato, Katarina Colic, Igor Hut, D. Mirjanić, S. Pelemiš, Aleksandra Mitrovic

Published in: Biomaterials in Clinical Practice

Publisher: Springer International Publishing

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The hip joint is one of the largest joints in the body and is a major weight-bearing joint. The function of the hip is to withstand body weight during standing and walking; during single leg stance the hip joint must carry a load three times greater the body weight. However, Joint degeneration is the final phase of the joint cartilage destruction, leading to severe pain, loss of mobility, and sometimes even angular deformity of the limbs. The primary reasons for a large number of total hip replacements are osteoarthritis and osteoporosis of the femoral neck, which often leads to hip fractures. One of the most successful techniques to restore function of a degenerated joint is the total joint replacement. In this surgical procedure, diseased cartilage and parts of the bone are removed and replaced with an appropriate joint prosthesis. Several types of materials and techniques have been developed for this purpose: glass, polymer, metal alloy, ceramics, etc. Earliest prosthesis designs and biomaterials that have been developed to treat osteoarthritic hip degenerated joint surfaces were for the most part empirical and unsuccessful. Joint replacement heralded a revolution after the materials and replacement procedures developed by Sir John Charnley. A modern total hip prosthesis consists of a femoral and acetabular component, where the femoral head is made of cobalt-chrome alloy, alumina or zirconium, and the stem component is now usually made of Ti- or Co-Cr-based alloy. The search for improved designs and new hip implant biomaterials with better biocompatibility and more desirable mechanical properties is still underway.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
go back to reference Abujaber SB et al (2015) Sit-to-stand biomechanics before and after total hip arthroplasty. J Arthroplasty 30(11):2027–2033CrossRef Abujaber SB et al (2015) Sit-to-stand biomechanics before and after total hip arthroplasty. J Arthroplasty 30(11):2027–2033CrossRef
go back to reference Affatato S et al (2009) Mixing and matching in ceramic-on-metal hip arthroplasty: an in-vitro hip simulator study. J Biomech 42(15):2439–2446CrossRef Affatato S et al (2009) Mixing and matching in ceramic-on-metal hip arthroplasty: an in-vitro hip simulator study. J Biomech 42(15):2439–2446CrossRef
go back to reference Archibeck MJ et al (2006) Cementless total hip arthroplasty in patients 50 years or younger. J Arthroplasty 21(4):476–483CrossRef Archibeck MJ et al (2006) Cementless total hip arthroplasty in patients 50 years or younger. J Arthroplasty 21(4):476–483CrossRef
go back to reference Balac I et al (2012) Modeling of the matrix porosity influence on the elastic properties of particulate biocomposites. FME Trans 40(2):81–86 Balac I et al (2012) Modeling of the matrix porosity influence on the elastic properties of particulate biocomposites. FME Trans 40(2):81–86
go back to reference Boelch SP et al (2017) Comparison of open reduction and internal fixation and primary total hip replacement for osteoporotic acetabular fractures: a retrospective clinical study. Int Orthop 41(9):1831–1837 Boelch SP et al (2017) Comparison of open reduction and internal fixation and primary total hip replacement for osteoporotic acetabular fractures: a retrospective clinical study. Int Orthop 41(9):1831–1837
go back to reference Bottai V et al (2015) Total hip replacement in osteoarthritis: the role of bone metabolism and its complications. Clin Cases Miner Bone Metab 12(3):247–250 Bottai V et al (2015) Total hip replacement in osteoarthritis: the role of bone metabolism and its complications. Clin Cases Miner Bone Metab 12(3):247–250
go back to reference Boudeau N et al (2012) Composite based on polyetheretherketone reinforced with carbon fibres, an alternative to conventional materials for femoral implant: manufacturing process and resulting structural behaviour. Mater Des 40:148–156CrossRef Boudeau N et al (2012) Composite based on polyetheretherketone reinforced with carbon fibres, an alternative to conventional materials for femoral implant: manufacturing process and resulting structural behaviour. Mater Des 40:148–156CrossRef
go back to reference Buford A, Goswami T (2004) Review of wear mechanisms in hip implants: paper I—General. Mater Des 25:385–393CrossRef Buford A, Goswami T (2004) Review of wear mechanisms in hip implants: paper I—General. Mater Des 25:385–393CrossRef
go back to reference Charnley J (1970) Acrylic cement in orthopaedic surgery. E. S, Livingstone, Edinbourgh Charnley J (1970) Acrylic cement in orthopaedic surgery. E. S, Livingstone, Edinbourgh
go back to reference Chimento GF, Sculco TP (2001) Minimally invasive total hip arthroplasty. Op Techn Orthop 11(4):270–273CrossRef Chimento GF, Sculco TP (2001) Minimally invasive total hip arthroplasty. Op Techn Orthop 11(4):270–273CrossRef
go back to reference Coomber R (2016) Total hip replacement for hip fracture: surgical techniques and concepts. Injury 47(10):2060–2064 Coomber R (2016) Total hip replacement for hip fracture: surgical techniques and concepts. Injury 47(10):2060–2064
go back to reference Dulić B et al (2003) Prelomi kuka (in Serbian). Acta Clinica, Klinički centar Srbije, Beograd Dulić B et al (2003) Prelomi kuka (in Serbian). Acta Clinica, Klinički centar Srbije, Beograd
go back to reference Dunn JS (1987) Anatomy. A regional atlas of the human body. J Anat 155:214–215 Dunn JS (1987) Anatomy. A regional atlas of the human body. J Anat 155:214–215
go back to reference Fisher J (2001) In: Toni A, Willmann G (eds), Proceedings 6th International Biolox Symposium, pp 94–98 Fisher J (2001) In: Toni A, Willmann G (eds), Proceedings 6th International Biolox Symposium, pp 94–98
go back to reference Gard PJ, Iorio FR, Healy WL (2000) Hip replacement: choosing an implant. Op Techn Orthop 10(2):94–101CrossRef Gard PJ, Iorio FR, Healy WL (2000) Hip replacement: choosing an implant. Op Techn Orthop 10(2):94–101CrossRef
go back to reference Goi KLS et al (2008) Elastic modulus of sintered porous Ti–Si–Zr, using activation by Ti–Si mechanically alloyed powder and TiH2 powder. Mater Sci Eng A 475:45–51CrossRef Goi KLS et al (2008) Elastic modulus of sintered porous Ti–Si–Zr, using activation by Ti–Si mechanically alloyed powder and TiH2 powder. Mater Sci Eng A 475:45–51CrossRef
go back to reference Gomez P, Morcuende JA (2005) Early attempts at hip arthroplasty-1700s to 1950s. Iowa Orthop J 25:25–29 Gomez P, Morcuende JA (2005) Early attempts at hip arthroplasty-1700s to 1950s. Iowa Orthop J 25:25–29
go back to reference Good V et al (2005) Oxidized zirconium: a potentially longer lasting hip implant. Mater Des 26(7):618–622CrossRef Good V et al (2005) Oxidized zirconium: a potentially longer lasting hip implant. Mater Des 26(7):618–622CrossRef
go back to reference Gray H, Bannister LH (1995) Gray’s anatomy: the anatomical basis of medicine and surgery thirty-eig., Churchill Livingstone Gray H, Bannister LH (1995) Gray’s anatomy: the anatomical basis of medicine and surgery thirty-eig., Churchill Livingstone
go back to reference Hernigou P (2014) Smith-Petersen and early development of hip arthroplasty. Int Orthop 38:193–198CrossRef Hernigou P (2014) Smith-Petersen and early development of hip arthroplasty. Int Orthop 38:193–198CrossRef
go back to reference Hloch S et al (2014) Thermal manifestations and nanoindentation of bone cements for orthopaedic surgery. Therm Sci 18(S1):S251–S258CrossRef Hloch S et al (2014) Thermal manifestations and nanoindentation of bone cements for orthopaedic surgery. Therm Sci 18(S1):S251–S258CrossRef
go back to reference Katz JN (2006) Total joint replacement in osteoarthritis. Best Pract Res Clin Rheumatol 20(1):145–153CrossRef Katz JN (2006) Total joint replacement in osteoarthritis. Best Pract Res Clin Rheumatol 20(1):145–153CrossRef
go back to reference Knight SR, Aujla R, and Biswas SP (2011) Total Hip Arthroplasty-over 100 years of operative history. Orthop Rev (Pavia) Sep 6; 3(2):e16 Knight SR, Aujla R, and Biswas SP (2011) Total Hip Arthroplasty-over 100 years of operative history. Orthop Rev (Pavia) Sep 6; 3(2):e16
go back to reference Kühn KD (2000) Bone cements: up-to-date comparison of physical and mechanical properties of commercial materials. Springer, New YorkCrossRef Kühn KD (2000) Bone cements: up-to-date comparison of physical and mechanical properties of commercial materials. Springer, New YorkCrossRef
go back to reference Lapcikova M et al (2009) Nanometer size wear debris generated from ultra high molecular weight polyethylene in vivo. Wear 266:349–355CrossRef Lapcikova M et al (2009) Nanometer size wear debris generated from ultra high molecular weight polyethylene in vivo. Wear 266:349–355CrossRef
go back to reference Learmonth ID, Young C, Rorabeck C (2007) The operation of the century: total hip replacement. Lancet 370(9597):1508–1519CrossRef Learmonth ID, Young C, Rorabeck C (2007) The operation of the century: total hip replacement. Lancet 370(9597):1508–1519CrossRef
go back to reference Majewski PJ, Allidi G (2006) Synthesis of hydroxyapatite on titanium coated with organic self-assembled monolayers. Mater Sci Eng A 420:13–20CrossRef Majewski PJ, Allidi G (2006) Synthesis of hydroxyapatite on titanium coated with organic self-assembled monolayers. Mater Sci Eng A 420:13–20CrossRef
go back to reference Manley MT, Sutton K (2008) Bearings of the future for total hip arthroplasty. J Arthroplasty 23(7):47–50CrossRef Manley MT, Sutton K (2008) Bearings of the future for total hip arthroplasty. J Arthroplasty 23(7):47–50CrossRef
go back to reference Marieb EN, Hoehn K (2007) Human anatomy and physiology Marieb EN, Hoehn K (2007) Human anatomy and physiology
go back to reference McKee GK (1982) Total hip replacement—past, present and future. Biomaterials 3:130–135CrossRef McKee GK (1982) Total hip replacement—past, present and future. Biomaterials 3:130–135CrossRef
go back to reference Milne I, Ritchie RO, Karihaloo B (2003) Comprehensive structural integrity: bioengineering, vol 9. Elsevier Ltd, Oxford Milne I, Ritchie RO, Karihaloo B (2003) Comprehensive structural integrity: bioengineering, vol 9. Elsevier Ltd, Oxford
go back to reference Morlock M et al (2001) Duration and frequency of every day activities in total hip patients. J Biomech 34(7):873–881CrossRef Morlock M et al (2001) Duration and frequency of every day activities in total hip patients. J Biomech 34(7):873–881CrossRef
go back to reference Morrison JC et al (2002) Ceramic-on-ceramic bearings in total hip arthroplasty. Clin Orthop Relat Res 405:158–163CrossRef Morrison JC et al (2002) Ceramic-on-ceramic bearings in total hip arthroplasty. Clin Orthop Relat Res 405:158–163CrossRef
go back to reference Muster D (1990) Themistocles Gluck, Berlin 1890: a pioneer of multidisciplinary applied research into biomaterials for endoprostheses. Bull Hist Dent 38:3–6 Muster D (1990) Themistocles Gluck, Berlin 1890: a pioneer of multidisciplinary applied research into biomaterials for endoprostheses. Bull Hist Dent 38:3–6
go back to reference Nasiri M, Luo Y (2016) Study of sex differences in the association between hip fracture risk and body parameters by DXA-based biomechanical modeling. Bone 90:90–98CrossRef Nasiri M, Luo Y (2016) Study of sex differences in the association between hip fracture risk and body parameters by DXA-based biomechanical modeling. Bone 90:90–98CrossRef
go back to reference Park JB (2000) Hip joint prosthesis fixation-problems and possible solutions. The biomedical engineering handbook, vol 2. CRC Press LLC, Boca Raton, FL Park JB (2000) Hip joint prosthesis fixation-problems and possible solutions. The biomedical engineering handbook, vol 2. CRC Press LLC, Boca Raton, FL
go back to reference Park JB, Lakes RS (1992) Biomaterials an introduction. Plenum Press, New YorkCrossRef Park JB, Lakes RS (1992) Biomaterials an introduction. Plenum Press, New YorkCrossRef
go back to reference Pramanik S, Agarwal AK, Rai KN (2005) Chronology of total hip joint replacement and materials development. Trends Biomater Artif Organs 19(1):15–26 Pramanik S, Agarwal AK, Rai KN (2005) Chronology of total hip joint replacement and materials development. Trends Biomater Artif Organs 19(1):15–26
go back to reference Ratner BD et al (2004) Biomaterials science: an introduction to materials in medicine Ratner BD et al (2004) Biomaterials science: an introduction to materials in medicine
go back to reference Ruben RB, Fernandes PR, Folgado J (2012) On the optimal shape of hip implants. J Biomech 45(2):239–246CrossRef Ruben RB, Fernandes PR, Folgado J (2012) On the optimal shape of hip implants. J Biomech 45(2):239–246CrossRef
go back to reference Schmolders J et al (2017) Thirteen year follow-up of a cementless femoral stem and a threaded acetabular cup in patients younger than fifty years of age. Int Orthop 41(1):39–45 Schmolders J et al (2017) Thirteen year follow-up of a cementless femoral stem and a threaded acetabular cup in patients younger than fifty years of age. Int Orthop 41(1):39–45
go back to reference Sedmak A et al (2010) Structural integrity assessment of hip implant made of cobalt-chromium multiphase alloy. Struct Integr Life 10(2):161–164 Sedmak A et al (2010) Structural integrity assessment of hip implant made of cobalt-chromium multiphase alloy. Struct Integr Life 10(2):161–164
go back to reference Simpson DJ et al (2010) Biomechanics in orthopaedics: considerations of the hip and knee. Surg (Oxford) 28(10):478–482CrossRef Simpson DJ et al (2010) Biomechanics in orthopaedics: considerations of the hip and knee. Surg (Oxford) 28(10):478–482CrossRef
go back to reference Sink EL et al (2011) Multicenter study of complications following surgical dislocation of the hip. J Bone Joint Surg Am 93:1132–1136CrossRef Sink EL et al (2011) Multicenter study of complications following surgical dislocation of the hip. J Bone Joint Surg Am 93:1132–1136CrossRef
go back to reference Slonaker M, Goswami T (2004) Review of wear mechanisms in hip implants: paper II–ceramics IG004712. Mater Des 25:395–405CrossRef Slonaker M, Goswami T (2004) Review of wear mechanisms in hip implants: paper II–ceramics IG004712. Mater Des 25:395–405CrossRef
go back to reference Smith-Petersen MN (1948) The classic: evolution of mould arthroplasty of the hip joint. J Bone Joint Surg. 134:5–11 Smith-Petersen MN (1948) The classic: evolution of mould arthroplasty of the hip joint. J Bone Joint Surg. 134:5–11
go back to reference Starup-Linde J et al (2017) Epidemiology of Fractures in Diabetes. Calcif Tissue Int 100(2):109–121 Starup-Linde J et al (2017) Epidemiology of Fractures in Diabetes. Calcif Tissue Int 100(2):109–121
go back to reference Vandenbussche E et al (2008) The asymmetric profile of the acetabulum. Clin Orthop Relat Res 466:417–423CrossRef Vandenbussche E et al (2008) The asymmetric profile of the acetabulum. Clin Orthop Relat Res 466:417–423CrossRef
go back to reference Wang A, Essner A (2001) Three-body wear of UHMWPE acetabular cups by PMMA particles against CoCr, alumina and zirconia heads in a hip joint simulator. Wear 250:212–216CrossRef Wang A, Essner A (2001) Three-body wear of UHMWPE acetabular cups by PMMA particles against CoCr, alumina and zirconia heads in a hip joint simulator. Wear 250:212–216CrossRef
go back to reference Wiles P (1958) The surgery of the osteoarthritic hip. Br J Surg 45:488–497CrossRef Wiles P (1958) The surgery of the osteoarthritic hip. Br J Surg 45:488–497CrossRef
Metadata
Title
Short History of Biomaterials Used in Hip Arthroplasty and Their Modern Evolution
Authors
Saverio Affatato
Katarina Colic
Igor Hut
D. Mirjanić
S. Pelemiš
Aleksandra Mitrovic
Copyright Year
2018
DOI
https://doi.org/10.1007/978-3-319-68025-5_1