Biomedical Engineering Reference
In-Depth Information
Rayatpisheh, S., Heath, D.E., Shakouri, A., Rujitanaroj, P.O., Chew, S.Y., Chan-Park, M.B., 2014. Combining cell
sheet technology and electrospun scaffolding for engineered tubular, aligned, and contractile blood vessels.
Biomaterials 35 (9), 2713-2719 .
Roth, E.A., Xu, T., Das, M., Gregory, C., Hickman, J.J., Boland, T., 2004. Inkjet printing for high-throughput cell
patterning. Biomaterials 25 (17), 3707-3715 .
Stark, J., 1998. The use of valved conduits in pediatric cardiac surgery. Pediatric Cardiology 19 (4), 282-288 .
Schubert, C., van Langeveld, M.C., Donoso, L.A., 2013. Innovations in 3D printing: a 3D overview from optics to
organs. British Journal of Ophthalmology .
Sales, V.L., Engelmayr, G.C., Mettler, B.A., Johnson, J.A., Sacks, M.S., Mayer, J.E., 2006. Transforming growth
factor-beta 1 modulates extracellular matrix production, proliferation, and apoptosis of endothelial progenitor
cells in tissue-engineering scaffolds. Circulation 114, I193-I199 .
Shapira, A., Kim, D.H., Dvir, T., 2014. Advanced micro- and nanofabrication technologies for tissue engineering.
Biofabrication 6 (2), 020301 .
Soliman, S., Sant, S., Nichol, J.W., Khabiry, M., Traversa, E., Khademhosseini, A., 2011. Controlling the porosity
of ibrous scaffolds by modulating the iber diameter and packing density. J Biomed Mater Res A 96 (3),
566-574 .
Subbiah, T., Bhat, G.S., Tock, R.W., Parameswaran, S., Ramkumar, S.S., 2005. Electrospinning of nanoibers.
Journal of Applied Polymer Science 96 (2), 557-569 .
Sodian, R., Loebe, M., Hein, A., Martin, D.P., Hoerstrup, S.P., Potapov, E.V., Hausmann, H., Lueth, T., Hetzer,
R., 2002. Application of stereolithography for scaffold fabrication for tissue engineered heart valves. Asaio J
48 (1), 12-16 .
Sodian, R., Fu, P., Lueders, C., Szymanski, D., Fritsche, C., Gutberlet, M., Hoerstrup, S.P., Hausmann, H., Lueth,
T., Hetzer, R., 2005. Tissue engineering of vascular conduits: fabrication of custom-made scaffolds using rapid
prototyping techniques. Thorac Cardiovasc Surg 53 (3), 144-149 .
Saunders, R.E., Gough, J.E., Derby, B., 2008. Delivery of human ibroblast cells by piezoelectric drop-on-demand
inkjet printing. Biomaterials 29 (2), 193-203 .
Song, S.J., Choi, J., Park, Y.D., Hong, S., Lee, J.J., Ahn, C.B., Choi, H., Sun, K., 2011. Sodium Alginate Hydrogel-
Based Bioprinting Using a Novel Multinozzle Bioprinting System. Artiicial Organs 35 (11), 1132-1136 .
Tasoglu, S., Demirci, U., 2013. Bioprinting for stem cell research. Trends Biotechnol 31 (1), 10-19 .
Wu, H., Fan, J., Chu, C.C., Wu, J., 2010. Electrospinning of small diameter 3D nanoibrous tubular scaffolds with
controllable nanoiber orientations for vascular grafts. J Mater Sci Mater Med 21 (12), 3207-3215 .
Wang, Y., Kibbe, M.R., Ameer, G.A., 2013. Photo-crosslinked biodegradable elastomers for controlled nitric oxide
delivery. Biomater Sci 1 (6), 625-632 .
Xu, T., Jin, J., Gregory, C., Hickman, J.J., Boland, T., 2005. Inkjet printing of viable mammalian cells. Biomaterials
26 (1), 93-99 .
Xu, T., Gregory, C.A., Molnar, P., Cui, X., Jalota, S., Bhaduri, S.B., Boland, T., 2006. Viability and electrophysiology
of neural cell structures generated by the inkjet printing method. Biomaterials 27 (19), 3580-3588 .
Ye, L., Wu, X., Duan, H.Y., Geng, X., Chen, B., Gu, Y.Q., Zhang, A.Y., Zhang, J., Feng, Z.G., 2012. The in vitro
and in vivo biocompatibility evaluation of heparin-poly(epsilon-caprolactone) conjugate for vascular tissue
engineering scaffold. Biomed Mater Res A 100 (12), 3251-3258 .
Yamazoe, H., Tanabe, T., 2009. Cell micropatterning on an albumin-based substrate using an inkjet printing
technique. J Biomed Mater Res A 91 (4), 1202-1209 .
Zhang, H., Jia, X., Han, F., Zhao, J., Zhao, Y., Fan, Y., Yuan, X., 2013. Dual-delivery of VEGF and PDGF by
double-layered electrospun membranes for blood vessel regeneration. Biomaterials 34 (9), 2202-2212 .
Ziabari, M., Mottaghitalab, V., Haghi, A., 2010. A new approach for optimization of electrospun nanoiber
formation process. Korean Journal of Chemical Engineering 27 (1), 340-354 .
Zein, I., Hutmacher, D.W., Tan, K.C., Teoh, S.H., 2002. Fused deposition modeling of novel scaffold architectures
for tissue engineering applications. Biomaterials 23 (4), 1169-1185 .
Search WWH ::




Custom Search