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Muller, B. & Schwille, P. (2004). Studying reaction kinetics by simultaneous FRET and cross-correlation analysis in a miniaturized continuous flow reactor, Phys. Chem. Chem. , Vol. 6, pp. 4416-4420. ; Lunde I. R. (2006). Characteristics of Hydrodynamically Focused Streams for Use in Microscale Particle Image Velocimetry (Micro-PIV), Proceedings of ASME 4th International Conference on Nanochannels, Microchannels and Minichannels, CD-ROM Proceedings ISBN 0-79183778-5, June, Limmerick, Ireland. M.

Magome, N. & Yoshikawa, K. (2004). Forward and backward laser-guided motion of an oil droplet, Phys. Rev. E 70: 046301. , Tsukita, S. & Funatsu, T. (2006). On-chip cell sorting system using laser-induced heating of a thermoreversible gelation polymer to control flow, Anal. Chem. 78: 695–701. , Chen, D. L. & Ismagilov, R. F. (2006). Reactions in droplets in microfluidic channels, Angew. Chem. Int. Ed. 45: 7336–7356. 200601554 Microfluidic Transport DrivenEffects by Opto-Thermal Effects Microfluidic Transport Driven by Opto-Thermal 27 25 Squires, T.

Rev. E 75: 046302. 046302 Baroud, C. , Robert de Saint Vincent, M. -P. (2007b). An optical toolbox for total control of droplet microfluidics, Lab Chip 7: 1029–1033. 1039/B702472J Barton, K. D. & Subramanian, R. S. (1989). The migration of liquid drops in a vertical temperature gradient, J. Colloid Interface Sci. 133: 211–222. 1016/0021-9797(89)90294-4 Berry, D. , Heckenberg, N. R. & Rubinsztein-Dunlop, H. (2000). Effects associated with bubble formation in optical trapping, J. Mod. Opt. 47: 1575–1585.

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