Biomedical Engineering Reference
In-Depth Information
[11] Fujibayashi, S., Neo, M., Kim, H.M. et al . (2003) A comparative study between
in vivo bone ingrowth and in vitro apatite formation on Na 2 O-CaO-SiO 2 glasses.
Biomaterials , 24 , 1349-1356.
[12] Brink, M., Turunen, T., Happonen, R.P. and Yli-Urpo, A. (1997) Compositional
dependence of bioactivity of glasses in the system Na 2 O-K 2 O-MgO-CaO-B 2 O 3 -
P 2 O 5 -SiO 2 . Journal of Biomedical Materials Research , 37 , 114-121.
[13] O'Donnell, M.D. and Hill, R.G. (2010) Influence of strontium and the importance of
glass chemistry and structure when designing bioactive glasses for bone regeneration.
Acta Biomaterialia , 6 , 2382-2385.
[14] Watts, S.J., Hill, R.G., O'Donnell, M.D. and Law, R.V. (2010) Influence of magnesia
on the structure and properties of bioactive glasses. Journal of Non-Crystalline
Solids , 356 , 517-524.
[15] Kokubo, T. and Takadama, H. (2006) How useful is SBF in predicting in vivo bone
bioactivity? Biomaterials , 27 , 2907-2915.
[16] Bohner, M. and Lemaitre, J. (2009) Can bioactivity be tested in vitro with SBF
solution? Biomaterials , 30 , 2175-2179.
[17] Xynos, I.D., Edgar, A.J., Buttery, L.D.K. et al . (2001) Gene-expression profiling of
human osteoblasts following treatment with the ionic products of Bioglass 45S5
dissolution. Journal of Biomedical Materials Research , 55 , 151-157.
[18] Oonishi, H., Hench, L.L., Wilson, J. et al . (2000) Quantitative comparison of bone
growth behavior in granules of Bioglass, A-W glass-ceramic, and hydroxyapatite.
Journal of Biomedical Materials Research , 51 , 37-46.
[19] Peltola, M.J., Aitasalo, K.M.J., Suonpaa, J.T.K. et al . (2001) In vivo model for
frontal sinus and calvarial bone defect obliteration with bioactive glass S53P4 and
hydroxyapatite. Journal of Biomedical Materials Research , 58 , 261-269.
[20] Lai, W., Garino, J., Flaitz, C. and Ducheyne, P. (2005) Excretion of resorption
products from bioactive glass implanted in rabbit muscle. Journal of Biomedical
Materials Research Part A , 75A , 398-407.
[21] Fredholm, Y.C. (2009) Development and characterisation of strontium-containing
bioactive glasses and aluminium-free glass polyalkenoate cements. PhD thesis.
Imperial College London, London.
[22] Merwin, G.E. (1986) Bioglass middle-ear prosthesis - preliminary report. Annals of
Otology, Rhinology and Laryngology , 95 , 78-82.
[23] Froum, S.J., Weinberg, M.A. and Tarnow, D. (1998) Comparison of bioactive glass
synthetic bone graft particles and open debridement in the treatment of human
periodontal defects. A clinical study. Journal of Periodontology , 69 , 698-709.
[24] Lovelace, T.B., Mellonig, J.T., Meffert, R.M. et al . (1998) Clinical evaluation of
bioactive glass in the treatment of periodontal osseous defects in humans. Journal
of Periodontology , 69 , 1027-1035.
[25] Oonishi, H., Kushitani, S., Yasukawa, E. et al . (1997) Particulate Bioglass compared
with hydroxyapatite as a bone graft substitute. Clinical Orthopaedics and Related
Research , 334 , 316-325.
[26] Wefel, J.S. (2009) NovaMin: likely clinical success. Advances in Dental Research ,
21 , 40-43.
Search WWH ::




Custom Search