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Basic Micr ofluidic and Soft Lithographic Techniques 31
65. M. J. Fuerstman, P. Garstecki, and G. M. Whitesides, “Coding/Decoding and
reversibility of droplet trains in microfluidic networks,” Science, 315, (2007),
828–832.
66. M. Prakash and N. Gershenfeld, “Microfluidic bubble logic,” Science, 315,
(2007), 832–835.
67. S.-Y. Teh, R. Lin, L.-H. Hung, and A. P. Lee, “Droplet microfluidics,” Lab Chip,
8, (2008), 198–220.
68. P. Garstecki, I. Gitlin, W. DiLuzio, G. M. Whitesides, E. Kumacheva, and H. A.
Stone, “Formation of monodisperse bubbles in a microfluidic flow-focusing
device,” Appl. Phys. Lett., 85, (2004), 2649–2651.
69. P. Garstecki, H. A. Stone, and G. M. Whitesides, “Mechanism for flow-rate con-
trolled breakup in confined geometries: a route to monodisperse emulsions,”
Phys. Rev. Lett., 94, (2005), 164501/164501–164501/164504.
70. P. Garstecki and G. M. Whitesides, “Flowing crystals: nonequilibrium structure
of foam,” Phys. Rev. Lett., 97, (2006), 024503/024501–024503/024504.
71. P. Garstecki, M. J. Fuerstman, H. A. Stone, and G. M. Whitesides, “Formation
of droplets and bubbles in a microfluidic T-junction-scaling and mechanism of
break-up,” Lab Chip, 6, (2006), 437–446.
72. T. Thorsen, R. W. Roberts, F. H. Arnold, and S. R. Quake, “Dynamic pattern for-
mation in a vesicle-generating microfluidic device,” Phys. Rev. Lett., 86, (2001),
4163–4166.
73. B. A. Grzybowski, S. T. Brittain, and G. M. Whitesides, “Thermally actuated
interferometric sensors based on the thermal expansion of transparent elasto-
meric media,” Rev. Sci. Instrum., 70, (1999), 2031–2037.
74. Z. Li, Z. Zhang, A. Scherer, and D. Psaltis, “Mechanically tunable optofluidic
distributed feedback dye laser,” Opt. Exp., 14, (2006), 10494–10499.
75. J. A. Rogers, R. J. Jackman, O. J. A. Schueller, and G. M. Whitesides,
“Elastomeric diffraction gratings as photothermal detectors,” Appl. Opt., 35,
(1996), 6641–6647.
76. J. A. Rogers, O. J. A. Schueller, C. Marzolin, and G. M. Whitesides, “Wave-front
engineering by use of transparent elastomeric optical elements,” Appl. Opt., 36,
(1997), 5792–5795.