Page 57 - IJB-3-1
P. 57
Lothar Koch, Ole Brandt, Andrea Deiwick, et al.
printing to form three-dimensional lines of olfactory sted bioprinting using a femtosecond laser with and with-
ensheathing cells. Biomedical Materials, vol.3(3): out a gold transductive layer: A parametric study. SPIE
034101. Digital Library, USA.
https://doi.org/10.1088/1748-6041/3/3/034101 https://doi.org/ 10.1117/12.2209087
6. Horneffer V, Linz N, and Vogel A, 2007, Principles of 13. Lin Y, Huang Y, and Chrisey DB, 2011, Metallic
laser-induced separation and transport of living cells. foil-assisted laser cell printing. Journal of Biomechanical
Journal of Biomedical Optics, vol.12(5): 054016. Engineering, vol.133(2): 025001.
https://doi.org/10.1117/1.2799194 https://doi.org/10.1115/1.4003132
7. Duocastella M, Fernández-Pradas JM, Morenza JL, et al., 14. Gruene M, Unger C, Koch L, et al., 2011, Dispensing
2010, Sessile droplet formation in the laser-induced for- pico to nanolitre of a natural hydrogel by laser-
ward transfer of liquids: A time-resolved imaging study.
Thin Solid Films, vol.518(18): 5321–5325. assisted bioprinting. Biomedical Engineering Online, vol.
https://doi.org/10.1016/j.tsf.2010.03.082 10: 19.
8. Brown MS, Brasz CF, Ventikos Y, et al., 2012, Impulsively https://doi.org/10.1186/1475-925X-10-19
actuated jets from thin liquid films for high-resolution 15. Unger C, Gruene M, Koch L, et al., 2011, Time-resolved
printing applications. Journal of Fluid Mechanics, vol.709: imaging of hydrogel printing via laser-induced forward
341–370. transfer. Applied Physics A, vol.103(2): 271–277.
https://doi.org/10.1017/jfm.2012.337 https://doi.org/10.1007/s00339-010-6030-4
9. Ali M, Pages E, Ducom A, et al., 2014, Controlling la- 16. Zhang Z, Xiong R, Mei R, et al., 2015, Time-resolved
ser-induced jet formation for bioprinting mesenchymal imaging study of jetting dynamics during laser printing of
stem cells with high viability and high resolution. Biofab- viscoelastic alginate solutions. Langmuir, vol.31(23):
rication, vol.6(4): 045001. 6447− 6456.
https://doi.org/10.1088/1758-5082/6/4/045001
10. Taidi B, Lebernede G, Koch L, et al., 2016, Colony de- https://doi.org/10.1021/acs.langmuir.5b00919
velopment of laser printed eukaryotic (yeast and micro- 17. Sharma MK, 2013, Optimization of laser induced for-
alga) microorganisms in co-culture. International Journal ward transfer by finite element modeling. Master thesis,
of Bioprinting, vol.2(2): 37–43. Royal Institute of Technology-KTH, Stockholm, Sweden,
https://doi.org/10.18063/IJB.2016.02.001 viewed October 2, 2016.
11. Duocastella M, Patrascioiu A, Fernández-Pradas JM, et al., <http://www.diva-portal.org/smash/get/diva2:617570/full
2010, Film-free laser forward printing of transparent and text01.pdf>
weakly absorbing liquids. Optics Express, vol.18(21): 18. Hopp B, Smausz T, Antal Z, et al., 2004, Absorbing film
21815–21825. assisted laser induced forward transfer of fungi (Tricho-
https://doi.org/10.1364/OE.18.021815 derma conidia). Journal of Applied Physics, vol.96(6): 3478–
12. Desrus H, Chassagne B, Catros S, et al., 2016, Proc- 3481.
eedings of SPIE 9706—Optical Interactions with Tissues https://doi.org/10.1063/1.1782275
and CellsXXVII,97060O, March 7, 2016: Laser assi-
International Journal of Bioprinting (2017)–Volume 3, Issue 1 53

