Biomedical Engineering Reference
In-Depth Information
[52]
Chaturvedi TP, R Srivastava, AK Srivastava, V Gupta and PK Verma (2013). Doxycycline poly
e-caprolactone nanofibers in patients with chronic periodontitis - a clinical evaluation. Journal
of Clinical and Diagnostics Research 7: 2339-2342.
[53]
Javali MA and KL Vandana (2012). A comparative evaluation of atrigel delivery system (10%
doxycycline hyclate) Atridox with scaling and root planing and combination therapy in treatment
of periodontitis: A clinical study. Journal of the Indian Society of Periodontology 16: 43-48.
[54]
Kannan RY, HJ Salacinski, KM Sales, PE Butler and AM Seifalian (2006). The endothelializa-
tion of polyhedral oligomeric silsesquioxane nanocomposites: an in vitro study. Cell Biochemistry
and Biophysics 45: 129-136.
[55]
Kannan RY, HJ Salacinski, JE Ghanavi, A Narula, M Odlyha, H Peirovi, PE Butler and AM
Seifalian (2007). Silsesquioxane nanocomposites as tissue implants. Plastic and Reconstruction
Surgery 119: 1653-1662.
[56]
Santerre JP, K Woodhouse, G Laroche and RS Labow (2005). Understanding the biodegrada-
tion of polyurethanes: from classical implants to tissue engineering materials. Biomaterials 26:
7457-7470.
[57]
Vara DS, HJ Salacinski, RY Kannan, L Bordenave, G Hamilton and AM Seifalian (2005).
Cardiovascular tissue engineering: state of the art. Pathologie Biologie (Paris) 53: 599-612.
[58]
Oseni AO, PE Butler and AM Seifalian (2013). The application of POSS nanostructures in
cartilage tissue engineering: the chondrocyte response to nanoscale geometry. Journal of Tissue
Engineering and Regenerative Medicine. doi: 10.1002/term.1693.
[59]
Rahmani B, S Tzamtzis, H Ghanbari, G Burriesci and AM Seifalian (2012). Manufacturing and
hydrodynamic assessment of a novel aortic valve made of a new nanocomposite polymer.
Journal of Biomechanics 45: 1205-1211.
[60]
Punshon G, DS Vara, KM Sales, AG Kidane, HJ Salacinski and AM Seifalian (2005). Interactions
between endothelial cells and a poly(carbonate-silsesquioxane-bridge-urea)urethane. Biomaterials
26: 6271-6279.
[61]
Kannan RY, HJ Salacinski, M Odlyha, PE Butler and AM Seifalian (2006). The degradative
resistance of polyhedral oligomeric silsesquioxane nanocore integrated polyurethanes: an
in vitro study. Biomaterials 27: 1971-1979.
[62]
Sudaryanto, T Nishino, S Asaoka and K Nakamae (2001). Incorporation of methyl groups into
hard segments of segmented polyurethane: microphase separation and adhesive properties.
International Journal of Adhesion and Adhesives 21: 71-75.
[63]
Chuang FS, WC Tsen and YC Shu (2004). The effect of different siloxane chain-extenders on the
thermal degradation and stability of segmented polyurethanes. Polymer Degradation and
Stability 84: 69-77.
[64]
Ebert M, B Ward, J Anderson, R McVenes and K Stokes (2005). In vivo biostability of polyether
polyurethanes with polyethylene oxide surface-modifying end groups; resistance to biologic
oxidation and stress cracking. Journal of Biomedical Materials Research A 75: 175-184.
[65]
Nayyer L, M Birchall, AM Seifalian and G Jell (2014). Design and development of nanocom-
posite scaffolds for auricular reconstruction. Nanomedicine 10: 235-246.
[66]
Guasti L, B Vagaska, NW Bulstrode, AM Seifalian and P Ferretti (2013). Chondrogenic
differentiation of adipose tissue-derived stem cells within nanocaged POSS-PCU scaffolds: A
new tool for nanomedicine. Nanomedicine 10: 279-289.
[67]
Jungebluth P, E Alici, S Baiguera, K Le Blanc, P Blomberg, B Bozoky, C Crowley, O Einarsson, KH
Grinnemo, T Gudbjartsson, et al . (2011). Tracheobronchial transplantation with a stem-cell-seeded
bioartificial nanocomposite: a proof-of-concept study. Lancet 378: 1997-2004.
[68]
Ghanbari H, A de Mel and AM Seifalian (2011). Cardiovascular application of polyhedral
oligomeric silsesquioxane nanomaterials: a glimpse into prospective horizons. International
Journal of Nanomedicine 6: 775-786.
[69]
de Mel A, G Punshon, B Ramesh, S Sarkar, A Darbyshire, G Hamilton and AM Seifalian
(2009). In situ endothelialization potential of a biofunctionalised nanocomposite biomaterial-
based small diameter bypass graft. Biomedical Materials and Engineering 19: 317-331.
[70]
Chaloupka K, M Motwani and AM Seifalian (2011). Development of a new lacrimal drainage
conduit using POSS nanocomposite. Biotechnology and Applied Biochemistry 58: 363-370.
Search WWH ::




Custom Search