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Tytuł artykułu

Biometrological method of pelvis measurement and anatomical positioning of endoprosthesis of hip joint

Treść / Zawartość
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Warianty tytułu
Języki publikacji
PL
Abstrakty
EN
This elaboration presents the method of virtual positioning of the construction of an endoprosthesis of hip joint in a patient's pelvis and femoral bone, reconstructed on the basis of imaging obtained from computer tomography. It is based on the matching of an implant to individual anatomical-biomechanical conditions. The method is established on the following procedures: diagnostic, spatial modeling, virtual measuring and targeted biometrological application for the model of bone structures. The final effect of the completed procedures is selection and optimal positioning of the endoprosthesis of hip joint before a planned medical intervention. The determined geometrical parameters of bone structures and settled positioning of the endoprosthesis can create data for the system of computer navigation.
Rocznik
Strony
17--26
Opis fizyczny
Bibliogr. 15 poz., rys.
Twórcy
autor
autor
autor
autor
  • Cracow University of Technology, Faculty of Mechanical Engineering, Aleja Jana Pawła II 37, 31-864 Kraków, Poland, andrzej@ryniewicz.pl
Bibliografia
  • [1] Bosker, B.H., Ettema, H.B., Verheyen, C.P., Castelein, R.M. (2009). Acetabular augmentation ring for recurrent dislocation stability rate after an average follow-up of 74 months. Int Orthop., 33(1), 49-52.
  • [2] Cech, O., Dzupa, V., Svatos, F. (2001). The uncemented cup of the CLS Spotorno joint endoprosthesis-5-years’ results. Acta Chir Orthop Traumatol., 68 (1), 10-17.
  • [3] DiGioia, A.M., Jaramaz, B., Blackwell, M. (1998). The Otto Aufranc Award. Image guided navigation system to measure intraoperatively acetabular implant alignment. Clin Orthop., 355, 8-22.
  • [4] Gandhi, R., Marchie, A. Farrokhyar, F., Nizar M. (2009). Computer navigation in total hip replacement a meta-analysis. Int Orthop., 33(3), 593-597.
  • [5] Hawi, N., Liodakis, E., O'Loughlin, P.F., Kabbani, A.R., Stüber, V., Petri, M., Stübig, T., Krettek, C., Citak, M. (2012). Progress towards intra-operative measurement of femoral antetorsion. Technol Health Care., 20(1), 57-63.
  • [6] Hisatome, T., Doi, H. (2011). Theoretically optimum position of the prosthesis in total hip arthroplasty to fulfill the severe range of motion criteria due to neck impingement. J Orthop Sci, 16(2), 229-237.
  • [7] Jaramaz, B., DiGioia, A.M., Blackwell, M., Nikau, C. (1998). Computer assisted measurement of cup placement in total hip replacement. Clin Orthop., 354, 70-81.
  • [8] Lewinnek, G.E., Lewis, J.L., Tarr, R. (1978). Compere CLand Zimmerman JR. Dislocations after total hip-replacement arthroplasties. J Bone Joint Surg Am., 60, 217-220.
  • [9] Li, Y.J., Yang, G.J., Zhang, L.C., Cai, C.Y., Wu, L.J. (2010). Influences of head/neck ratio and femoral antetorsion on the safe-zone of operative acetabular orientations in total hip arthroplasty. Chin J Traumatol., 13(4), 206-211.
  • [10] Madej, T., Ryniewicz, A.M. (2010). The material-structure estimation of endoprostheses of hip joint in the numerical simulations. Engineering of Biomaterials, 95(14), 22-32.
  • [11] Ryniewicz, A. (2010). Accuracy assessment of shape mapping using computer tomography. Metrol. Meas. Syst., 17(3), 481-492.
  • [12] Ryniewicz, A.M. (2011). Identification, modeling and biotribology of human joints. Cracow, AGH University of Science and Technology Press.
  • [13] Ryniewicz, A.M., Madej, T. (2010). Preclinical tests of endoprostheses of hip joint using finite elements methods. Engineering of Biomaterials, 94(9), 14-23.
  • [14] Sendtner, E., Tibor, S., Winkler, R., Wörner, M., Grifka, J., Renkawitz, T. (2010). Stem torsion in total hip replacement. Acta Orthop., 81(5), 579-582.
  • [15] Sendtner, E., Müller, M., Winkler, R., Wörner, M., Grifka, J., Renkawitz, T. (2010). Femur first in hip arthroplasty-the concept of combined anteversion. Z Orthop Unfall. 148(2), 185-190.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSW1-0113-0002
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