Biomedical Engineering Reference
In-Depth Information
175. Khalil S, Nam J, Sun W (2004) Biopolymer deposition for freeform fabrication of tissue
engineered scaffolds. Proceedings of the IEEE 30th annual northeast bioengineering confer-
ence 2004, pp 136-137
176. Zhuo X, Yongnian Y, Shenguo W, Renji Z, Chao Z (2002) Fabrication of porous scaffolds for
bone tissue engineering via low-temperature deposition. Scr Mater 46(11):771-776
177. Landers R, Mulhaupt R (2000) Desktop manufacturing of complex objects, prototypes and
biomedical scaffolds by means of computer-assisted design combined with computer-guided
3D plotting of polymers and reactive oligomers. Macromol Mater Eng 282(9):17-21
178. Kim GH, Son JG (2009) 3D polycarprolactone (PCL) scaffold with hierarchical structure
fabricated by a piezoelectric transducer (PZT)-assisted bioplotter. Appl Phys A Mater
94(4):781-785
179. Ang TH, Sultana FSA, Hutmacher DW, Wong YS, Fuh JYH, Mo XM et al (2002) Fabrication
of 3D chitosan-hydroxyapatite scaffolds using a robotic dispensing system. Mater Sci Eng C
Biomim Supramol Syst 20(1-2):35-42
180. Cesarano J (1999) A review of robocasting technology. Solid Freeform Additive Fabrication
542:133-139
181. Franco J, Hunger P, Launey ME, Tomsia AP, Saiz E (2010) Direct write assembly of calcium
phosphate scaffolds using a water-based hydrogel. Acta Biomater 6(1):218-228
182. Munch E, Franco J, Deville S, Hunger P, Saiz E, Tomsia AP (2008) Porous ceramic scaffolds
with complex architectures. JOM 60(6):54-58
183. Smay JE, Gratson GM, Shepherd RF, Cesarano J, Lewis JA (2002) Directed colloidal assem-
bly of 3D periodic structures. Adv Mater 14(18):1279-1283
184. Gratson GM, Xu MJ, Lewis JA (2004) Microperiodic structures—direct writing of three-
dimensional webs. Nature 428(6981):386-386
185. Duoss EB, Twardowski M, Lewis JA (2007) Sol-gel inks for direct-write assembly of func-
tional oxides. Adv Mater 19(21):3485-3489
186. van Osch THJ, Perelaer J, de Laat AWM, Schubert US (2008) Inkjet printing of narrow con-
ductive tracks on untreated polymeric substrates. Adv Mater 20(2):343-345
187. Guo JJ, Lewis JA (1999) Aggregation effects on the compressive flow properties and drying
behavior of colloidal silica suspensions. J Am Ceram Soc 82(9):2345-2358
188. Iwami K, Noda T, Ishida K, Morishima K, Nakamura M, Umeda N (2010) Bio rapid proto-
typing by extruding/aspirating/refilling thermoreversible hydrogel. Biofabrication
2(1):014108
189. Li SJ, Xiong Z, Wang XH, Yan YN, Liu HX, Zhang RJ (2009) Direct fabrication of a hybrid
cell/hydrogel construct by a double-nozzle assembling technology. J Bioact Compat Polym
24(3):249-265
190. Li SJ, Yan YN, Xiong Z, Weng CY, Zhang RJ, Wang XH (2009) Gradient hydrogel construct
based on an improved cell assembling system. J Bioact Compat Polym 24:84-99
191. Smith CM, Stone AL, Parkhill RL, Stewart RL, Simpkins MW, Kachurin AM et al (2004)
Three-dimensional bioassembly tool for generating viable tissue-engineered constructs.
Tissue Eng 10(9-10):1566-1576
192. Lee W, Debasitis JC, Lee VK, Lee JH, Fischer K, Edminster K et al (2009) Multi-layered
culture of human skin fibroblasts and keratinocytes through three-dimensional freeform fab-
rication. Biomaterials 30(8):1587-1595
193. Cheng J, Lin F, Liu HX, Yan YN, Wang XH, Zhang R et al (2008) Rheological properties of
cell-hydrogel composites extruding through small-diameter tips. J Manuf Sci Eng Trans
ASME 130(2):021014
194. Xu M, Wang X, Yan Y, Yao R, Ge Y (2010) An cell-assembly derived physiological 3D
model of the metabolic syndrome, based on adipose-derived stromal cells and a gelatin/
alginate/fibrinogen matrix. Biomaterials 31(14):3868-3877
195. Skardal A, Zhang J, McCoard L, Xu X, Oottamasathien S, Prestwich GD (2010)
Photocrosslinkable hyaluronan-gelatin hydrogels for two-step bioprinting. Tissue Eng Part A
16(8):2675-2685
196. Chang R, Sun W (2008) Effects of dispensing pressure and nozzle diameter on cell survival
from solid freeform fabrication-based direct cell writing. Tissue Eng Part A 14(1):41-48
Search WWH ::




Custom Search