Have a personal or library account? Click to login
Ultrastructural identification of cells involved in the healing of intramembranous bone grafts in both the presence and absence of demineralised intramembranous bone matrix Cover

Ultrastructural identification of cells involved in the healing of intramembranous bone grafts in both the presence and absence of demineralised intramembranous bone matrix

Open Access
|Dec 2023

References

  1. Urist MR, Bone: formation by autoinduction. Science 1965; 150: 893–9.
  2. Reddi AH, Huggins C. Biochemical sequences in the transformation of normal fibroblasts in adolescent rats. Proc Natl Acad Sci USA 1972; 1601–5.
  3. Reddi AH. Cell and biochemistry of endochondral bone development. Coll Relat Res 1981; 1: 209–26.
  4. Rabie ABM, Shou D, Samman N. Ultrastructural identification of cells involved in the healing of intramembranous and endochondral bones. Int J Oral and Maxillofac Surg 1996; 25: 383–8.
  5. Rabie ABM. Vascular endothelial growth pattern during demineralised bone matrix induced osteogenesis. Connect Tissue Res 1997; 36(4), 337–45.
  6. Wong RWK, Rabie ABM. A quantitative assessment of the healing of intramembranous and endochondral autogenous bone grafts. Eur J Orthod 1999; 21: 119–26.
  7. Cunningham N, Ma S, Reddi AH. Bone grafts and bone substitutes. In: Habal MB, Reddi AH, eds. Biologic principles of bone induction: Application to bone grafts. Pennsylvania: WB Saunders Company, 1992; 93.
  8. Cunningham N, Ma S, Reddi AH. Bone grafts and bone substitutes. In: Habal MB, Reddi AH, eds. Biologic principles of bone induction: Application to bone grafts. Pennsylvania: W Saunders Company, 1992; 94.
  9. Weiss RE, Reddi AH. Role of fibronection in collagenous matrix induced mesenchymal cell proliferation and differentiation in vivo. Exp Cell Res 1981; 13: 247–54.
  10. Glowacki J, Kaban LB, Murray JE, Folkman J, Mulliken JB. Application of the biological principle of induced osteogenesis for craniofacial defects. Lancet 1981; 1: 959–62.
  11. Glowacki J, Mulliken JB. Deminieralised bone implants. Clin Plast Surg 1985; 12: 233–41.
  12. Rabie ABM, Comfort MB. Composite grafts in alveolar ridge augmentation for implants. In: Rabie ABM, Urist MR, eds. Bone formation and repair. Amsterdam: Elsiever, 1997; 47.
  13. Rabie ABM, Lie KJ. Integration of endochondral bone grafts in the presence of demineralised bone matrix. Int J Oral and Maxillofac Surg 1996; 25: 311–8.
  14. Scott CK, Bain SD, Hightower JA. Intramembranous bone matrix is osteo-inductive. Anat Rec 1994; 238: 23–30.
  15. Scott CK, Hightower JA. The matrix of endochondral bone differs from the matrix of intramembranous bone. Calcif Tissue Int 1991; 49: 349–54.
  16. Rifas L, Vitto J, Memoli VA, Kuettner KE, Henry RW, Peck WA. Selective emergence of differentiated chondrocytes during serum-free cultures of cells derived from fetal rat calvaria. J Cell Biol 1982; 92: 493–504.
DOI: https://doi.org/10.2478/aoj-2000-0012 | Journal eISSN: 2207-7480 | Journal ISSN: 2207-7472
Language: English
Page range: 88 - 97
Submitted on: May 1, 1999
Accepted on: Mar 1, 2000
Published on: Dec 13, 2023
Published by: Australian Society of Orthodontists Inc.
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2023 Siew Han Chay, A. Bakr M. Rabie, Anut Itthagarun, published by Australian Society of Orthodontists Inc.
This work is licensed under the Creative Commons Attribution 4.0 License.