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Distraction osteogenesis and fracture healing : differences and similarities

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In experimental research dealing with repair osteogenesis different aspects of its course are stressed. The osteotomy type influences osteoinduction and development of blood vessels, whereas biomechanical features of bone tissue are obtained by proper stabilisation of newly formed callus. Different directions of callus evolution create their final morphology. In this paper, similarities and differences in regenerate and callus morphology are compared in detail.
Rocznik
Strony
83--88
Opis fizyczny
Bibliogr. 28 poz., rys.
Twórcy
autor
  • Agriculture University of Wrocław, Department of Histology and Embryology [Akademia Rolnicza we Wrocławiu], Kożuchowska 5, 51-631 Wrocław
autor
  • Agriculture University of Wrocław, Department of Histology and Embryology [Akademia Rolnicza we Wrocławiu], Kożuchowska 5, 51-631 Wrocław
  • Agriculture University of Wrocław, Department of Histology and Embryology [Akademia Rolnicza we Wrocławiu], Kożuchowska 5, 51-631 Wrocław
Bibliografia
  • [1] AKESON W.H., WOO SL-Y., RUTHARFORD L., CONTIS R.D., CONSALYES M., AUMIEL D., The effects of rigidity of internal fixation plates on long bone remodeling , Acta Orthop. Scan., 1976, 47, 241-249.
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  • [5] COCHRAN G., Effects of internal fixation plates on mechanical deformation of bone, Surg. Forum, 1969, 20, 469-471.
  • [6] CORNELLC.N., LANEJ.M., Newest factors in fracture healing, Clin . Orthop., 1992, 277, 297.
  • [7] FORELL B., STRAW RC., Bone morphogenetic proteins and bone derived growth factors, Veterinary and Comparative Orthopaedics and Traumatology, 1 993, 6, 3, 166-171; 46 ref.
  • [8] FROST H. M., The biology of fracture healing. An overview for clinicians, Part I, Clin . Orthop., 1989, 248, 283.
  • [9] HARADA K., OIDA S., SASKI S., Chondrogenesis and osteogenesis of bone marrow-derived cells by bone-inductive factor , Bone, 1988, 9, 177.
  • [10] HOPFTH., ALBERT H., Die Biegefestiger der Plattenostheosynthese . Unfall. Chirurg., 1990, 93, 104.
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  • [12] TLIZAROY G.A., The tension-stress effect on the genesis and growth of tissues. Part I. The influence of stability affixation and soft tissue preservation, Clin. Orthop., 1989, 238, 249.
  • [13] INGBER D.E., FOLKMAN J ., Tension and compression as basic determinants of cell fonn and function. Utilization of a cellular tensegrity mechanism, Cell Shape, 1989, 3.
  • [14] KOTWICKI A., SZYMONIS-SZYMANOWSKl W., RATAJCZAK K., Vergleichende Untersuchung der Knochenbruchheilung bei der AO- und der Zespol-Kompressionsosteosynthese. II. Anatomisch-patologische Beurteilung, Orthop. Praxis, 1994, Vol. 10, 658.
  • [15] KOTWICKI A., KURYSZKO J., SZYMONIS-SZYMANOWSKI W., SIEMBIEDA J., Vergleichende Untersuchung der Knochenbruchheilung bei d er AO- und der Zespol-Kompressionsosteosynthese. I. Klinische und radiolog ische Beurteilung , Orthop. Praxis, 1994, Vol. 10, 658.
  • [16] KRAWCZYK A., WALL A., KUROPKA P., KURYSZKO J., DRAGAN Sz., Evaluation of new bone regenerate formation in distraction osteogenesis depending on the method of osteotomy, Materiały zjazdowe EORS 3-4, June 1999, Brussels, p. 50.
  • [17] KURYSZKO J., SZYMONIS-SZYMANOWSK.l W., KOTWICKI A., Vergleichende Untersuchung der Knochenbruchheilung bei der AO- und der Zespol-Kompressionsosteosynthese. III. Histologische Bewertung, Orthop. Praxis, 1994, Vol. 10, 662.
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  • [19] MOSEKILDE LI., MOSEKILDE L., Normal vertebral body size and compressive strength, relations to age and vertebral and iliac trabecular body compressive strength, Bone, 1986, 7, 207-212.
  • [20] MOSEKILDE LI., MOSEKILDE L., Sex differences in age-related changes in vertebral body size, density and biomechanical competence in normal individuals, Bone, 1990, 11, 67-73.
  • [21] MOSEKILDE LI., Consequence of the remodeling process for vertebral trabecular bone structure, a scanning electron microscopy study, Bone Miner, 1990, 10, 13-35.
  • [22] MURRAY E.J.B., SONG M.K., LAIRD E.C., MURRAY S.S., Strain-dependent differences in vertebral bone mass, serum osteocalcin, and calcitonin in calcium-replete and -deficient mice, Proceedings of the Society for Experimental Biology and Medicine, 1993, 203, 1, 64-73; 51 ref.
  • [23] NIEDŻWIEDZKI T., DĄBROWSKI Z., MISZTA H., PAWLIKOWSKI M., Bone healing after bone marrow cell transplantation to the bone defect, Biomat., 1993,14, 115.
  • [24] OWEN M., Marrow stromal stem cells, J. Cell Sci. Suppl., 1988, 10, 63.
  • [25] PAAVALAINEN P., KARAHARIU E., SLATIS P., AKESON J., HOLMSTROM T., Effect of rigid plate fixation on structure and mineral content of cortical bone, Clin Orthop., 1978, 136, 287-293.
  • [26] PARFITT AM., Age related structural changes in trabecular and cortical bone, cellular mechanisms and biomechanical consequences, Calcif. Tissue Int.,l984, 36 (suppl. 1), 123-128.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB1-0013-0021
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