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Radius Kırıklarında Plak Fiksasyonu Ve İntramedüller Çivileme Yöntemlerinin Teorik Olarak İncelenmesi

Year 2012, Volume: 16 Issue: 3, 330 - 336, 01.06.2012

Abstract

While forearm fractures are often treated with plate-screw osteosynthesis, intramedullary nailing gained importance recently. For this aim, radius bone model was obtained using CT images, a fracture was introduced to the model and the callus, which is a structure forms during healing, was added to the model. Plate and intramedullary nail models were implemented to radius model. Structural behaviors of obtained models and callus on treatments with various implants were investigated under axial loading. In the light of these analyses, stresses on bone-implant structure and callus movement were investigated from the angle of application and treatment, depending on implant selection.

References

  • Kovacı, H., Radius intramedüller çivilerde farklı sabitleme pozisyonları ile oluşan mekanik etkilerin sonlu elemanlar yöntemi ile incelenmesi. Atatürk Üniverisitesi, Fen Bilimleri Enstitüsü, 2011.
  • Weckbach, A., T. Blattert, and C. Weißer, Interlocking nailing of forearm fractures. Archives of Orthopaedic and Trauma Surgery, 2006. 126 (5): p. 309-315.
  • Jones, D.J., et al., A biomechanical comparison of two methods of fixation of fractures of the forearm. Journal of orthopaedic trauma, 1995. 9(3): p. 198.
  • Lee, Y.H., et al., Interlocking contoured intramedullary nail fixation for selected diaphyseal fractures of the forearm in adults. The Journal of Bone and Joint Surgery, 2008. 90 (9): p. 1891.
  • Houshian, S. and S.K. Bajaj, Forearm fractures in children:: Single bone fixation with elastic stable intramedullary nailing in 20 cases. Injury-International Journal of the Care of the Injured, 2005. 36 (12): p. 1421
  • Burkhart, K.J., et al., Intramedullary nailing vs. palmar locked plating for unstable dorsally comminuted distal radius fractures: A biomechanical study. Clinical Biomechanics, 2010. 25(8): p. 771-775.
  • Claes, L., et al., Influence of size and stability of the osteotomy gap on the success of fracture healing. Journal of orthopaedic research, 1997. 15 (4): p. 577-584.
  • Duda, G.N., et al., Interfragmentary movements in the early phase of healing in distraction and correction osteotomies stabilized with ring fixators. Langenbeck's Archives of Surgery, 2003. 387 (11): p. 433-440.
  • Kaspar, K., et al., Angle stable locking reduces interfragmentary movements and promotes healing after unreamed nailing. Study of a displaced osteotomy model in sheep tibiae. The Journal of Bone and Joint Surgery, 87 (9): p. 2028.
  • Klein, P., et al., The initial phase of fracture healing is specifically sensitive to mechanical conditions. Journal of orthopaedic research, 2003. 21 (4): p. 662-669.
  • Rogge, R.D., B.D. Adams, and V.K. Goel, An analysis of bone stresses and fixation stability using a finite element model of simulated distal radius fractures. The Journal of hand surgery, 2002. 27(1): p. 86-92.
  • Shefelbine, S.J., et al., Prediction of fracture callus mechanical properties using micro-CT images and voxel- based finite element analysis. Bone, 2005. 36 (3): p. 480-488.
  • Anderson, D.D., et al., A three-dimensional finite element model of the radiocarpal joint: distal radius fracture step-off and stress transfer. The Iowa Orthopaedic Journal, 2005. 25: p. 108.
  • Troy, K.L. and M.D. Grabiner, Off-axis loads cause failure of the distal radius at lower magnitudes than axial loads: a finite element analysis. Journal of biomechanics, 2007. 40 (8): p. 1670-1675.

Theoretical Investigation Of Plate Fixation And Intramedullary Nailing Methods On Radius Fractures

Year 2012, Volume: 16 Issue: 3, 330 - 336, 01.06.2012

Abstract

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References

  • Kovacı, H., Radius intramedüller çivilerde farklı sabitleme pozisyonları ile oluşan mekanik etkilerin sonlu elemanlar yöntemi ile incelenmesi. Atatürk Üniverisitesi, Fen Bilimleri Enstitüsü, 2011.
  • Weckbach, A., T. Blattert, and C. Weißer, Interlocking nailing of forearm fractures. Archives of Orthopaedic and Trauma Surgery, 2006. 126 (5): p. 309-315.
  • Jones, D.J., et al., A biomechanical comparison of two methods of fixation of fractures of the forearm. Journal of orthopaedic trauma, 1995. 9(3): p. 198.
  • Lee, Y.H., et al., Interlocking contoured intramedullary nail fixation for selected diaphyseal fractures of the forearm in adults. The Journal of Bone and Joint Surgery, 2008. 90 (9): p. 1891.
  • Houshian, S. and S.K. Bajaj, Forearm fractures in children:: Single bone fixation with elastic stable intramedullary nailing in 20 cases. Injury-International Journal of the Care of the Injured, 2005. 36 (12): p. 1421
  • Burkhart, K.J., et al., Intramedullary nailing vs. palmar locked plating for unstable dorsally comminuted distal radius fractures: A biomechanical study. Clinical Biomechanics, 2010. 25(8): p. 771-775.
  • Claes, L., et al., Influence of size and stability of the osteotomy gap on the success of fracture healing. Journal of orthopaedic research, 1997. 15 (4): p. 577-584.
  • Duda, G.N., et al., Interfragmentary movements in the early phase of healing in distraction and correction osteotomies stabilized with ring fixators. Langenbeck's Archives of Surgery, 2003. 387 (11): p. 433-440.
  • Kaspar, K., et al., Angle stable locking reduces interfragmentary movements and promotes healing after unreamed nailing. Study of a displaced osteotomy model in sheep tibiae. The Journal of Bone and Joint Surgery, 87 (9): p. 2028.
  • Klein, P., et al., The initial phase of fracture healing is specifically sensitive to mechanical conditions. Journal of orthopaedic research, 2003. 21 (4): p. 662-669.
  • Rogge, R.D., B.D. Adams, and V.K. Goel, An analysis of bone stresses and fixation stability using a finite element model of simulated distal radius fractures. The Journal of hand surgery, 2002. 27(1): p. 86-92.
  • Shefelbine, S.J., et al., Prediction of fracture callus mechanical properties using micro-CT images and voxel- based finite element analysis. Bone, 2005. 36 (3): p. 480-488.
  • Anderson, D.D., et al., A three-dimensional finite element model of the radiocarpal joint: distal radius fracture step-off and stress transfer. The Iowa Orthopaedic Journal, 2005. 25: p. 108.
  • Troy, K.L. and M.D. Grabiner, Off-axis loads cause failure of the distal radius at lower magnitudes than axial loads: a finite element analysis. Journal of biomechanics, 2007. 40 (8): p. 1670-1675.
There are 14 citations in total.

Details

Primary Language Turkish
Journal Section Research Articles
Authors

Halim Kovacı This is me

Hojjat Ghahramanzadeh Asl This is me

İrfan Kaymaz This is me

Akgün Alsaran This is me

Ayhan Çelik This is me

Gürsel Saka This is me

Publication Date June 1, 2012
Submission Date March 14, 2014
Published in Issue Year 2012 Volume: 16 Issue: 3

Cite

APA Kovacı, H., Asl, H. G., Kaymaz, İ., Alsaran, A., et al. (2012). Radius Kırıklarında Plak Fiksasyonu Ve İntramedüller Çivileme Yöntemlerinin Teorik Olarak İncelenmesi. Sakarya University Journal of Science, 16(3), 330-336. https://doi.org/10.16984/saufbed.49383
AMA Kovacı H, Asl HG, Kaymaz İ, Alsaran A, Çelik A, Saka G. Radius Kırıklarında Plak Fiksasyonu Ve İntramedüller Çivileme Yöntemlerinin Teorik Olarak İncelenmesi. SAUJS. December 2012;16(3):330-336. doi:10.16984/saufbed.49383
Chicago Kovacı, Halim, Hojjat Ghahramanzadeh Asl, İrfan Kaymaz, Akgün Alsaran, Ayhan Çelik, and Gürsel Saka. “Radius Kırıklarında Plak Fiksasyonu Ve İntramedüller Çivileme Yöntemlerinin Teorik Olarak İncelenmesi”. Sakarya University Journal of Science 16, no. 3 (December 2012): 330-36. https://doi.org/10.16984/saufbed.49383.
EndNote Kovacı H, Asl HG, Kaymaz İ, Alsaran A, Çelik A, Saka G (December 1, 2012) Radius Kırıklarında Plak Fiksasyonu Ve İntramedüller Çivileme Yöntemlerinin Teorik Olarak İncelenmesi. Sakarya University Journal of Science 16 3 330–336.
IEEE H. Kovacı, H. G. Asl, İ. Kaymaz, A. Alsaran, A. Çelik, and G. Saka, “Radius Kırıklarında Plak Fiksasyonu Ve İntramedüller Çivileme Yöntemlerinin Teorik Olarak İncelenmesi”, SAUJS, vol. 16, no. 3, pp. 330–336, 2012, doi: 10.16984/saufbed.49383.
ISNAD Kovacı, Halim et al. “Radius Kırıklarında Plak Fiksasyonu Ve İntramedüller Çivileme Yöntemlerinin Teorik Olarak İncelenmesi”. Sakarya University Journal of Science 16/3 (December 2012), 330-336. https://doi.org/10.16984/saufbed.49383.
JAMA Kovacı H, Asl HG, Kaymaz İ, Alsaran A, Çelik A, Saka G. Radius Kırıklarında Plak Fiksasyonu Ve İntramedüller Çivileme Yöntemlerinin Teorik Olarak İncelenmesi. SAUJS. 2012;16:330–336.
MLA Kovacı, Halim et al. “Radius Kırıklarında Plak Fiksasyonu Ve İntramedüller Çivileme Yöntemlerinin Teorik Olarak İncelenmesi”. Sakarya University Journal of Science, vol. 16, no. 3, 2012, pp. 330-6, doi:10.16984/saufbed.49383.
Vancouver Kovacı H, Asl HG, Kaymaz İ, Alsaran A, Çelik A, Saka G. Radius Kırıklarında Plak Fiksasyonu Ve İntramedüller Çivileme Yöntemlerinin Teorik Olarak İncelenmesi. SAUJS. 2012;16(3):330-6.