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Computer modelling and simulation techniques as a tool for aiding the design of orthopaedic unilateral external fixators - focused on innovative solutions

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents the methods of modelling and simulation of the bone-external fixator system for fracture healing of long bones. Special emphasis was put on relations between clinical assumptions and the applied analytical and simulation apparatus. Concepts of application of heuristic techniques based on artificial neural networks for studying the process of bone union are presented. Together with the results of the simulation studies, some results of the examinations performed under clinical conditions are presented.
Słowa kluczowe
Rocznik
Strony
395--415
Opis fizyczny
Bibliogr. 13 poz. rys., wykr.
Twórcy
  • Institute of Micromechanics and Photonics Faculty of Mechatronics Warsaw University of Technology 02-525 Warsaw, Poland
Bibliografia
  • 1. J. DESZCZYŃSKI, J. KARPIŃSKI, Dynamic fixation of fractures by means of dynamic Dynastab-DK fixators as a new way of functional fracture healing, Chirurgia Narz d6w Ruchu i Ortopedia Polska, LVII, supl. 2, Warszawa 1992.
  • 2. D. JASIŃSKA-CHOROMAŃSKA, G. PAWLICKI, J. DESZCZYŃSKI, J. KARPIŃSKI, W. CHOROMANSKI, Motion and Vibration Control in Medicine - Focus on New Generation of Orthopaedic External Fixator, The Third International Conference on Motion and Vi­ bration Control MOVIC, pp. 381-386, Tokyo 1996.
  • 3. D. JASIŃSKA-CHOROMAŃSKA, J. DESZCZYŃSKI, J. KARPIŃSKI, W. CHOROMANSKI, Mecha­ tronic orthopaedic external fixators, XVIII Symposium on Fundamentals of Machine Design, Kielce-Amieli6wka 1997.
  • 4. D. JASIŃSKA-CHOROMAŃSKA, Analysis of properties of the bio-mechatronical bone-external fixator system in the mechanical and clinical area, The III Scientific-Technical Conference "MECHATRONIKA'97", Warsaw 1997.
  • 5. G. DE BASTINI, R. ALDEGHERI, Dynamic Axial Fixation. A Rational Alternative for the External Fixation of Fractures, International Orthopaedics, Springer-Verlag, 1986.
  • 6. C. T. BRIGHTON, Principles of Fracture Healing, Part I, The Biology of Fracture Repair, Instr. Course Lect, 1984.
  • 7. R. GRANOWSKI, Zespol - new method of fixed osteosynthesis [in Polish], Ph. D. thesis, Medical Academy, Warsaw 1990.
  • 8. A. GRUCA, Orthopaedic surgery, vol. 1-3, Warsaw 1972-78.
  • 9. A. E. GOODSHIP, P. E. WATKINS, H. S. RIGBY, J. KENWRIGHT, The role of fixator frame stiffness in control of fracture healing. An experimental study, J. of Biomechanics, 28, 9, 1027-1035, 1993.
  • 10. J. KORBICZ, A. 0BUCHOWICZ, M. UCIŃSKI, Artificial neural networks [in Polish], Academic Printing HOWse, Warsaw 1994.
  • 11. J. KRUSZEWSKI, W. GAWROŃSKI, E. WITTBRODT, F. NAJBAR, S. GRABOWSKI, The rigid finite element method [in Polish], Arkady, Warsaw 1975.
  • 12. R. TADEUSIEWICZ, Neural networks [in Polish], Academic Printing HOWse, Warsaw 1993.
  • 13. R. BĘDZIŃSKI, Engineering Biomechanics [in Polish], Oficyna Wydawnicza Politechniki Wrocławskiej, Wrocław 1997.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB2-0004-0078
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