Uneingeschränkter Zugang

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


Zitieren

Urist MR, Bone: formation by autoinduction. Science 1965; 150: 893–9. Search in Google Scholar

Reddi AH, Huggins C. Biochemical sequences in the transformation of normal fibroblasts in adolescent rats. Proc Natl Acad Sci USA 1972; 1601–5. Search in Google Scholar

Reddi AH. Cell and biochemistry of endochondral bone development. Coll Relat Res 1981; 1: 209–26. Search in Google Scholar

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. Search in Google Scholar

Rabie ABM. Vascular endothelial growth pattern during demineralised bone matrix induced osteogenesis. Connect Tissue Res 1997; 36(4), 337–45. Search in Google Scholar

Wong RWK, Rabie ABM. A quantitative assessment of the healing of intramembranous and endochondral autogenous bone grafts. Eur J Orthod 1999; 21: 119–26. Search in Google Scholar

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. Search in Google Scholar

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. Search in Google Scholar

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. Search in Google Scholar

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. Search in Google Scholar

Glowacki J, Mulliken JB. Deminieralised bone implants. Clin Plast Surg 1985; 12: 233–41. Search in Google Scholar

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. Search in Google Scholar

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. Search in Google Scholar

Scott CK, Bain SD, Hightower JA. Intramembranous bone matrix is osteo-inductive. Anat Rec 1994; 238: 23–30. Search in Google Scholar

Scott CK, Hightower JA. The matrix of endochondral bone differs from the matrix of intramembranous bone. Calcif Tissue Int 1991; 49: 349–54. Search in Google Scholar

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. Search in Google Scholar

eISSN:
2207-7480
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
Volume Open
Fachgebiete der Zeitschrift:
Medizin, Vorklinische Medizin, Grundlagenmedizin, andere