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The uncertain analysis of human pelvic bone

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Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Numerical modeling of the human pelvic bone is a complex process in which many important factors are taken into account. One of them concerns material properties. Numerical calculations require the characteristics of the material properties and the material parameters from the beginning. The material properties of the living body depend on age, health, gender, environment and many others factors. To determine correct material parameters, health details of a group of patients need to be taken into consideration. In this paper authors assumed interval values of the selected material parameters and proposed interval and fuzzy analysis of the pelvic bone.
Rocznik
Strony
631--636
Opis fizyczny
Bibliogr. 10 poz., rys., tab., wykr.
Twórcy
autor
autor
  • Silesian University of Technology, Department for Strength of Materials and Computational Mechanics, ul. Konarskiego 18A, 44-100 Gliwice
Bibliografia
  • [1] T. Belytschko, Y. Krongauz, D. Organ, M. Fleming, P. Krysl. Meshless methods: An overview and recent developments. Comput. Methods Appl. Mech. Engrg., 139: 3-47, 1996.
  • [2] T. Burczyński, A. John, K. Kus, P. Orantek, A. Poteralski. The evolutionary algorithm and hyperspace in identification of material coefficients in human pelvic bone. Acta of Bioengineering and Biomechanics, 5(Suppl. 1): 61-66, 2003.
  • [3] S.C. Cowin, ed. Bone Mechanics Handbook CRC Press, 2001.
  • [4] A. John. Numerical analysis of solid and shell models of human pelvic bone. In: L. Vulkov, J. Wasniewski, P. Yalamov, eds., Numerical Analysis and Its Applications, Lecture Notes in Computer Science 1988, pp. 764-771. Springer-Verlag, Berlin-Heidelberg, 2001.
  • [5] A. John, P. Orantek. Computer aided creation of geometrical model of human pelvic bone. Acta of Bioengineering and Biomechanics, 2(Suppl. 2): 217-220, 2001.
  • [6] A. John, P. Orantek. Computer aided creation of numerical model of human pelvic bone. Engineering Transactions, 51(2-3): 215-226, 2003.
  • [7] A. John, W. Kus, P. Orantek. Material coefficient identification of bone tissues using evolutionary algorithms. In: M. Tanaka, ed., Inverse Problems in Engineering Mechanics IV, pp. 95-102. Elsevier, 2003.
  • [8] R.E. Moore. Interval Analysis. Prentice-Hall, Englewood Cliffs, N.J., 1966.
  • [9] D.R.J. Owen, Y.T. Feng, K.W. Mak, M.E. Honnor. Computational modelling of large scale multiple fracturing solids and particulate systems. In: S. Valliappan, N. Khalili, eds., Computational Mechanics - New Frontiers for the New Millennium. Proceedings of the First Asian-Pacific Congress on Computational Mechanics, Vol. 1, pp. 117-126. Elsevier, Amsterdam, 2001.
  • [10] O.C. Zienkiewicz, R.L. Taylor. The Finite Element Method, Vol. 1: The Basis, fifth ed. Butterworth-Heinemann, Oxford, 2000.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB1-0031-0010
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