Comment to the Article „«Ischemic» Distraction Regenerate: Interpretation, Definition, Problems and Solutions

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About the authors

E. A. Shchepkina

Vreden Russian Research Institute of Traumatology and Orthopedics

Author for correspondence.
Email: shchepkina_elena@mail.ru

Elena A. Shchepkina — cand. Sci. (Med.), senior researcher, Vreden RRITO; associate professor, Department of Traumatology and orthopedics, Pavlov FSPS MU.

St. Petersburg Russian Federation

References

  1. Burke N.G., Cassar-Gheiti A.J., Tan J., Mchugh G., o’Neil B.J., Noonan M., Moore D. Regenerate bone fracture rate following femoral lengthening in paediatric patients. J Child Orthop. 2017; 11(3):210-215. doi: 10.1302/1863-2548.11.160216.
  2. Paley D. Problems, obstacles, and complications of limb lengthening by the Ilizarov technique. Clin Orthop Relat Res. 1990;250(1):81-104.
  3. Alzahrani M.M., Anam E., Alqahtani S.M., Makhdom A.M., Hamdy R.C. Strategies of enhancing bone regenerate formation in distraction osteogenesis. Connect Tissue Res. 2017;59(1):1-11. doi: 10.1080/03008207.2017.1288725.
  4. Ohashi S., Ohnishi I., Kageyama T., Fukuda S., Tsuchiya A., Imai K., Matsuyama J., Nakamura K. Effect of vascularity on canine distracted tibial callus consolidation. Clin Orthop Relat Res. 2005;(438):253-259.
  5. Дьячкова Г.В., Михайлов E.C., Ерофеев С.А., Нижечик С.А., Корабельников М.А. Качественные и количественные показатели рентгенологической оценки дистракционного регенерата. Гений ортопедии. 2003;(4):11-14.
  6. Tsuchiya H., Tomita K., Minematsu K., Mori Y., Asada N., Kitano S. Limb savage using distraction osteogenesis. J Bone Joint Surg Br. 1997;79-B:403-411.
  7. Ли Ганг. Новые достижения и секреты, раскрытые при изучении дистракционного остеогенеза. Гений ортопедии. 2007;(1):130-136.
  8. Hamanishi С., Yoshii T., Totani Y., Tanaka S. Lengthened callus activated by axial shortening. Histological and cytomorphometrical analysis. Clin Orthop Relat Res. 1994;(307):250-254.
  9. Schuelke J., Meyers N., Reitmaier S., Klose S., Ignatius A., Claes L. Intramembranous bone formation after callus distraction is augmented by increasing axial compressive strain. Plds One. 2018;13(4):e0195466. doi: 10.1371/journal.pone.0195466.
  10. Hamdy R.C., Rendon J.S., Tabrizian M. Distraction osteogenesis and its challenges in bone regeneration. In: Bone Regeneration. Haim Tal (ed.). Intech; 2012. P. 185-212.
  11. Omelyanenko, N. P., & Karpov, I. N. Patterns of cell-matrix interactions during formation the distraction bone regenerates. Bull Exp Biol Med. 2017;163(4):510-514. doi: 10.1007/s10517-017-3840-9.
  12. Rolim Filho E.L., Larrazabal M.C., Costa L.F. Jr, Santos S.M., Santos R.M., Aguiar JL. Effect of autologous stem cells on regenerated bone during distraction osteogenesis by Ilizarov technique in the radius of dogs. Histomorphometric analysis. Acta Cir Bras. 2013;28(8):574-581.
  13. Paley D, Herzenberg JE, Paremain G, Bhave A. Femoral lengthening over an intramedullary nail. A matched-case comparison with Ilizarov femoral lengthening. J Bone Joint Surg Am. 1997;79(10): 1464-1480.
  14. Sun X.T., Easwar T.R., Stephen M., Song S.H., Kim S.J., Song H.R. Comparative study of callus progression in limb lengthening with or without intramedullary nail with reference to the pixel value ratio and the Ru lfs classification. Arch Orthop Trauma Surg. 2011;131(10):1333-1340. doi: 10.1007/s00402-011-1302-9.
  15. Rozbruch S.R., Kleinman D., Fragomen A.T., Ilizarov S. Limb lengthening and then insertion of an intramedullary nail: a case-matched comparison. Clin Orthop Relat Res. 2008;466(12):2923-2932. doi: 10.1007/s11999-008-0509-8.
  16. Xu W.G. Comparison of intramedullary nail versus conventional Ilizarov method for lower limb lengthening: a systematic review and meta-analysis. Orthop Surg. 2017;9(2):159-166. doi: 10.1111/os.12330.
  17. Lai K.A., Lin C.J., Chen J.H. Application of locked intramedullary nails in the treatment of complications after distraction osteogenesis. J Bone Joint Surg Br. 2002;84(8):1145-1149.

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