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Numerical and Experimental Analysis of a Personalized Prosthesis for a Patient with Unilateral Hip Osteoarthritis

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Engineering Design Applications II

Abstract

In this work, the design and numerical evaluation of a personalized hip prosthesis for a 31-year-old male patient, who suffered of unilateral coxarthrosis, was performed. Based on the information obtained of the patient’s computerized axial tomography and the employment of specialized design platforms such as Solidworks®, a numerical analysis was performed for the prosthetic model in conjunction with the anthropometric data of the patient following the finite element mathematical method. Furthermore, the natural posture of the patient was taken into consideration every time the patient balanced the total weight on one leg. Furthermore, the structural mechanical evaluation of the prostheses was set under evaluation, considering the osseous integration of the femoral bone and the acetabulum before and after surgery.

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References

  1. Rozadilla A, Mateo L, Romera M (2002) Artrosis de cadera. La medicina hoy 62(1433):31–37

    Google Scholar 

  2. Murray MP, Gore DR, Brewer BJ, Gardner GM, Sepic SB (1979) A comparison of the functional performance of patients with Charnley and Muller total hip replacement. Acta Orthop Scand 50:563–569

    Article  Google Scholar 

  3. Olsson E, Goldie I, Wykman A (1985) Total hip replacement. Scand J Rehabil Med 18:107–116

    Google Scholar 

  4. Illyés A, Bejek Z, Szlávik I, Paróczai R, Kiss RM (2006) Three-dimensional gait analysis after unilateral cemented total hip arthroplasty. Phys Educ Sport 4(1):27–34

    Google Scholar 

  5. Nordin M, Frankel VH (2004) Biomecánica Básica del Sistema Musculoesquelético. McGraw Hill–Interamericana

    Google Scholar 

  6. Bronzino J (2000) Biomedical Engineering Handbook. CRC Press

    Google Scholar 

  7. Serieg A, Arvikar RJ (1975) The prediction of muscular load sharing and joint forces in the lower extremities during walking. J Biomech 8(2):89–102

    Article  Google Scholar 

  8. Bergmann G, Deuretzbacher G, Heller M, Graichen F, Rohlmann A, Strauss J, Duda GN (2001) Hip contact forces and gait patterns from routine activities. J Biomech. 34(7):859–871

    Google Scholar 

  9. Chaffin B (1969) A computerized biomechanical model development of and use in studying gross body actions. J Biomech 2:429–441

    Article  Google Scholar 

  10. Cowin S (2001) Bone mechanics handbook. CRC Press

    Google Scholar 

  11. Ruíz Muñoz OR (2016) Diseño de prótesis personalizada de cadera para paciente con coxartrosis unilateral, Tesis de maestria (en Español), Instituto Politécnico Nacional. México

    Google Scholar 

  12. Paprosky WG (1997) Cementless sockets: optimums and outcomes. Orthopedics 20:777–779

    Google Scholar 

  13. Perka C, Ludwig R (2001) Reconstruction of segmental defects during revision procedures of the acetabulum with the Burch-Schneider anti-protusio cage. J Arthroplasty 16:568–574

    Article  Google Scholar 

  14. Hasart O, Perka C, Lehnigk R, Thotz S (2011) Reconstrucción de grandes defectos acetabulares con aumentos metálicos tecnología de metal trabecular. Tec Quir Otop Traumatol 20(4):228–238

    Google Scholar 

  15. Udofia I, Liu F, Jin Z, Roberts P, Grigoris P (2007) The initial stability and contact mechanics of a press-fit resurfacing arthroplasty of the hip. J Bone Joint Surg (Br) 89-B(2):549–556

    Article  Google Scholar 

  16. Schidlo C, Becker C, Jansson V, Reflor J (1999) Change in the CCD angle and the femoral anteversion angle by hip prosthesis implantation. Z Orthop Ihre Grenzgeb 137(3):259–264

    Article  Google Scholar 

  17. Schultz T, Blaha R, Gruen JD, Norman TA (2006) Cortical bone viscoelasticity and fixation strength of press-fit femoral stems: a finite element model. J Biomech Eng 128:7–12

    Article  Google Scholar 

  18. Ojeda Díaz CJ (2009) Estudio de la influencia de estabilidad primaria en el diseño de vástagos de prótesis femorales personalizadas: aplicación a paciente específico, Tesis doctoral (en Español), Universidad Politécnica de Madrid

    Google Scholar 

  19. Norma 060. Material de Curación (Osteosintesis) (1991) Tornillos para esponjosa

    Google Scholar 

  20. Sánchez VM Ilizaliturri, Pariente G Mangino, Galindo J Camacho (2007) Tratamiento quirúrgico de la osteoartritis en la cadera: actualidades en artroplastía total de cadera. Reumatología clínica 3(3):57–62

    Article  Google Scholar 

  21. Beltrán-Fernández JA, González Rebatú y González M, Hernández-Gómez LH, González Rebatú y González A, Urriolagoitia-Calderón G (2013) Biomechanical prosthesis design of an orbicular cranial cavity, vol 40, pp 87–94. Springer

    Google Scholar 

  22. Calambas Pulgarín HL (2014) Materiales compuestos de alumina-zirconia para aplicaciones biomédicas, Tesis doctoral, (en Español), Universidad Nacional de la Plata. Argentina

    Google Scholar 

  23. Beltrán-Fernández JA, Romo-Escalante E, López-Saucedo F, Moreno-Garibaldi P, Hernández-Gómez LH, Urriolagoitia-Calderón G, Camacho-Tapía, N (2014) Biomechanical assembled prosthesis of a temporo mandibular joint disorder using biocompatible materials, vol 54, pp 135–146. Springer

    Google Scholar 

  24. Davy T, Kotzar MG, Heiple KG, Goldberg WM, Berilla J, Burstein AH (1998) Telemetric force measurements across the hip after total hip arthroplasty. J Bone Surg 70(1):45–50

    Article  Google Scholar 

  25. Blount WP (1956) Don’t throw away the cane. J Bone Joint Surg 38-A(3):695–708

    Article  Google Scholar 

  26. Inman VT (1947) Functional aspects of the abductor muscles of the hip. J Bone Joint Surg 29A:607–619

    Google Scholar 

  27. Weinans H, Huiskes R, Grootenboer HJ (1992) Effects of material properties of femoral hip components on bone remodeling. J Orthop Res 10(6):845–853

    Article  Google Scholar 

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Correspondence to Juan Alfonso Beltrán-Fernández .

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Beltrán-Fernández, J.A. et al. (2020). Numerical and Experimental Analysis of a Personalized Prosthesis for a Patient with Unilateral Hip Osteoarthritis. In: Öchsner, A., Altenbach, H. (eds) Engineering Design Applications II. Advanced Structured Materials, vol 113. Springer, Cham. https://doi.org/10.1007/978-3-030-20801-1_21

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  • DOI: https://doi.org/10.1007/978-3-030-20801-1_21

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  • Publisher Name: Springer, Cham

  • Print ISBN: 978-3-030-20800-4

  • Online ISBN: 978-3-030-20801-1

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