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Methods for designing and fabrication large-size medical models for orthopaedics

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Computed tomography and rapid prototyping techniques can be used to construct and fabricate large size bone models for orthopaedics. Rapid Prototyping technology enables the fabrication of a true-to-scale bone joint model based on 3D virtual models, generated by segmenting patients’ CT images. The model can be used to plan, to simulate, to assist prosthesis implantation for difficult cases of THR (Total Hip Replacements). The main restriction of implementing such models into medical practice is high cost of their production. Physical models of pelvic bones, were constructed on the basis of data collected during standard CT examinations. A method of development of a large-size model while fulfilling the requirement for reducing the price of model fabrication in the article was presented. The method can be used for fabrication the models with 3DP technique. This paper also discusses the issue of production costs when utilizing other RP techniques as well as their usefulness in practice.
Słowa kluczowe
Rocznik
Strony
623--627
Opis fizyczny
Bibliogr. 18 poz., rys.
Twórcy
autor
  • Department of Mechanical Engineering, The Faculty of Mechanical Engineering and Aeronautics, Rzeszow University Technology, 8 Powstańców Warszawy Ave., 35-959 Rzeszów, Poland
autor
  • Department of Trauma and Orthopaedic Surgery, MSW (Ministry of the Interior) Hospital in Cracow, 25 Kronikarza Galla St., 30-053 Kraków, Poland
autor
  • Department of Mechanical Engineering, The Faculty of Mechanical Engineering and Aeronautics, Rzeszow University Technology, 8 Powstańców Warszawy Ave., 35-959 Rzeszów, Poland
  • Department of Mechanical Engineering, The Faculty of Mechanical Engineering and Aeronautics, Rzeszow University Technology, 8 Powstańców Warszawy Ave., 35-959 Rzeszów, Poland
Bibliografia
  • [1] S.B. Murphy, P.K. Kijewski, S.R. Simon, H.P. Chandler, P.P. Griffin, D.T. Reilly, B.L. Penenberg, and M.M. Landy, “Computer-aided simulation, analysis, and design in orthopedic surgery”, Orthop. Clin. North. Am. 17 (4), 637–649 (1986).
  • [2] S.B. Murphy, P.K. Kijewski, M.B. Millis, J.E. Hall, and H.P. Chandler, “The planning of orthopaedic reconstructive surgery using computer-aided simulation and design”, Comput. Med. Imaging Graph. 12 (1), 33–45 (1988).
  • [3] P.D. Parchi, V. Ferrari, N. Piolanti, L. Andreani, S. Condino, G. Evangelisti, and M. Lisanti, “Computer tomography prototyping and virtual procedure simulation in difficult cases of hip replacement surgery”, Surg. Technol. Int. 23, 228–234 (2013).
  • [4] C. Faur, N. Crainic, C. Sticlaru, and C. Oancea, “Rapid prototyping technique in the preoperative planning for total hip arthroplasty with custom femoral components”, Wien Klin Wochenschr. 125 (5–6), 144–149 (2013).
  • [5] P. Potamianos, A.A. Amis, A.J. Forester, M. McGurk, and M. Bircher, “Rapid prototyping for orthopaedic surgery”, Proc. Institution of Mechanical Engineers, Part H: J. Engineering in Medicine 212 (5), 383–393 (1998).
  • [6] B. Sanghera, S. Naique, Y. Papaharilaou, and A. Amis, “Preliminary study of rapid prototype medical models”, Rapid Prototyping J. 7 (5), 275–284 (2001).
  • [7] A. Mäkitie, K.S. Paloheimo, R. Björkstrand, M. Salmi, R. Kontio, J. Salo, Y. Yan, M. Paloheimo, and J. Tuomi, “Medical applications of rapid prototyping three-dimensional bodies for planning and implementation of treatment and for tissue replacement”, Duodecim 126 (2), 143–151 (2010).
  • [8] S. Miechowicz and A. Marciniec, “Stereolitography – the choice for medical modeling”, Acta Bioengineering and Biomechanics 6/1, CD-ROM (2004).
  • [9] O. Markowska and S. Miechowicz, “Economic conditions on performing medical models with the use of selected methods of prototyping”, Symp. PKM 1, CD-ROM (2007).
  • [10] S. Miechowicz, A. Ciszewski, M. Janiszewski, J. Jamka, M. Libura, and P. Konieczny, “Methods of rapid prototyping in preoperative planning in musculoskeletal reconstructive surgery”, Surgery Movement Organs 76 (2), 63–68 (2011).
  • [11] http://fabathome.orgy (12.02.2015).
  • [12] http://www.mcortechnologies.com (12.02.2015).
  • [13] http://us.xyzprinting.com/us_en/Product/Nobel-1.0 (12.02.2015).
  • [14] M. E. Hoque, “Advanced applications of rapid prototyping technology in modern engineering”, www.intechopen.com (2011).
  • [15] http://www.tiertime.pl. (12.02.2015).
  • [16] S. Miechowicz and W. Jabłoński, “Medical CT data preparation and accuracy verification with mimics 8.11”, Structures-Waves-Human Health 14 (2), 101–108 (2005).
  • [17] A. Urbanik and S. Miechowicz, “Spatial analysis of CT accuracy”, Polish J. Radiology 69 (1), 372–319 (2004).
  • [18] D. White, K.L. Chelule, and B.B. Seedhom, “Accuracy of MRI vs CT imaging with particular reference to patient specific templates for total knee replacement surgery”, Int. J. Med Robot 4 (3), 224–231 (2012).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-84d1f6b2-3a2d-42af-bdbb-e92770f634c6
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