Biomedical Engineering Reference
In-Depth Information
[44] Z. Hong, G.M. Luz, P.J. Hampel, M. Jin, A. Liu, X. Chen, et al., Mono-dispersed bioactive glass
nanospheres: preparation and effects on biomechanics of mammalian cells, J. Biomed. Mater. Res. A
95 (2010) 747 754.
[45] A.G. Arroyo, D. Taverna, C.A. Whittaker, U.G. Strauch, B.L. Bader, H. Rayburn, et al., In vivo roles of
integrins during leukocyte development and traffic: insights from the analysis of mice chimeric for alpha
5, alpha v, and alpha 4 integrins, J. Immunol. 165 (2000) 4667
4675.
[46] R.O. Hynes, Q. Zhao, The evolution of cell adhesion, J. Cell Biol. 150 (2000) F89 F96.
[47] B.S. Chong, T.R. Pitt Ford, The role of intracanal medication in root canal treatment, Int. Endod. J.
25 (1992) 97 106.
[48] B.R. Oguntebi, Dentin tubule infection and endodontic therapy implications, Int. Endod. J. 27 (1994)
218 222.
[49] V. Ballal, M. Kundabala, S. Acharya, M. Ballal, Antimicrobial action of calcium hydroxide,
chlorhexidine and their combination on endodontic pathogens, Aust. Dent. J. 52 (2007) 118 121.
[50] P. Mehrvarzfar, H. Akhavan, H. Rastgarian, N.M. Akhlagi, R. Soleymanpour, A. Ahmadi, An in vitro
comparative study on the antimicrobial effects of bioglass 45S5 vs. calcium hydroxide on Enterococcus
faecalis, Iran. Endod. J. 6 (2010) 29 33.
[51] I. Allan, H. Newman, M. Wilson, Antibacterial activity of particulate Bioglass s against supra- and
subgingival bacteria, Biomaterials 22 (2001) 1683 1687.
[52] L.L. Hench, J. Wilson, Surface-active biomaterials, Science 226 (1984) 630 636.
[53] M. Vollenweider, T.J. Brunner, S. Knecht, R.N. Grass, M. Zehnder, T. Imfeld, et al., Remineralization
of human dentin using ultrafine bioactive glass particles, Acta Biomater. 3 (2007) 936 943.
[54] A.P. Forsback, S. Areva, J.I. Salonen, Mineralization of dentin induced by treatment with bioactive glass
S53P4 in vitro, Acta Odontol. Scand. 62 (2004) 14 20.
[55] D.G. Gillam, J.Y. Tang, N.J. Mordan, H.N. Newman, The effects of a novel Bioglass s dentifrice
on dentin sensitivity: a scanning electron microscopy investigation, J. Oral Rehabil. 29 (2002)
305 313.
[56] M. Brannstrom, A. Astrom, The hydrodynamics of the dentin; its possible relationship to dentinal pain,
Int. Dent. J. 22 (1972) 219 227.
[57] D.G. Gillam, H.S. Seo, J.S. Bulman, H.N. Newman, Perceptions of dentin hypersensitivity in a general
practice population, J. Oral Rehabil. 26 (1999) 710
714.
[58] D.G. Gillam, A. Aris, J.S. Bulman, H.N. Newman, F. Ley, Dentin hypersensitivity in subjects recruited
for clinical trials: clinical evaluation, prevalence and intra-oral distribution, J. Oral Rehabil. 29 (2002)
226 231.
[59] S. Lavenus, G. Louarn, P. Layrolle, Nanotechnology and dental implants, Int. J. Biomater.
(2010)
915327
[60] L.L. Hench, I.D. Xynos, J.M. Polak, Bioactive glasses for in situ tissue regeneration, J. Biomater. Sci.
Polym. Ed. 15 (2004) 543 562.
[61] L.L. Hench, Biomaterials, Science 208 (1980) 826 831.
[62] J.S. Zamet, U.R. Darbar, G.S. Griffiths, J.S. Bulman, U. Bragger, W. Burgin, et al., Particulate
Bioglass s as a grafting material in the treatment of periodontal intrabony defects, J. Clin. Periodontol.
24 (1997) 410 418.
[63] N. Neto, T. Deliberador, C. Storrer, A. Sousa, A. Campos, T. Lopes, The use of the bioactive glass in
the regenerative periodontal therapy—a literature review, RSBO 5 (2008) 81 89.
[64] L.L. Hench, Bioactive ceramics, Ann. N.Y. Acad. Sci. 523 (1988) 54 71.
[65] E. Schepers, M. De Clercq, P. Ducheyne, R. Kempeneers, Bioactive glass particulate material as a filler
for bone lesions, J. Oral Rehabil. 18 (1991) 439 452.
Search WWH ::




Custom Search