Armani, et al., “Microfabrication technology for polycaprolactone, a biodegradable polymer,” J. Micromech. Microeng. 10: 80-84 (2000). |
Becker, et al., “Polymer nanowell plates with variable well slope angles,” in Microreaction Technology: Industrial Prospects, Proceedings 3rd Int'l Conf. Microreaction Tech. (Ehrfeld, ed.), Springer 2000. |
Becker, et al., “Planar quartz chips with submicron channels for two-dimensional capillary electrophoresis applications,” J. Micromech. Microeng. 8: 24-28 (1998). |
Becker, et al., “Polymer Microfluidics: The Technology Chain,” in Microfluidic Devices and Systems III, Proceedings of SPIE vol. 4177 (Mastrangelo, et al., eds.) (2000). |
Becker, et al., “Hot Embossing as a Method for the Fabrication of Polymer High Aspect Ratio Structures,” Sensors and Actuators 83: 130-135 (2000). |
Becker, et al., “Polymer microfabrication methods for microfluidic analytical methods,” Electrophoresis 21: 12-26 (2000). |
Bremus-Kobberling, et al., “Laser Microperforation of a Retina Implant,” MICRO.tec 2000, Conference Proceedings, vol. 1, Hannover, Germany (Sep. 25-27,2000). |
Low, et al., “Microactuators Towards Microvalves for Responsive Controlled Drug Delivery,” Sensors & Actuators B 67: 149-60 (2000). |
Goretty, et al., “Microdevices Fabricated by Hot Embossing,” ACS Abstracts, No. 468, (Mar. 26-30, 2000). |
Jackman, et al., “Fabricating Large Arrays of Microwells with Arbitrary Dimensions and Filling Them Using Discontinuous Dewetting,” Anal. Chem. 70: 2280-2287 (1998). |
Madou & Florkey, “From Batch to Continuous Manufacturing of Microbiomedical Devices,” Chem. Rev., 100: 2679-92 (2000). |
Madou, Fundamentals of Microfabrication, pp. 468-512 (CRC Press 1997). |
Madou & He, “Exploitation of a Novel Artificial Muscle for Controlled Drug Delivery,” pp. 495-497 (1999). |
McCormick, et al., “Microchannel Electrophoretic Separations of DNA in Injection-Molded Plastic Substrates,” Anal. Chem. 69: 2626-2630 (1997). |
Sassi, et al., “Electrophoresis of DNA in novel thermoreversible matrices,” Electrophoresis 17: 1460-69 (1996). |
Surbled, et al., “Characterization of Sputtered TiNi Shape Memory Alloy Thin Films,” Jpn. J. Appl. Phys. 38: L1547-L1549 (1999). |
Surbled, et al., “Shape Memory Alloys for Micromembranes Actuation,” SPIE. 3825: 63-70 (1999). |
Surbled, et al., “Array of Shape Memory Alloy One-Shot Micro-Valves for Drug Delivery,” MME '99, Gif sur Yvette, France (Sep. 27-28, 1999). |
Tierney, et al., “New Electrorelease Systems Based on Microporous Membranes,” J. Electrochem. Soc., 137:3789-3793 (1990). |
Tierney, et al., “Electroreleasing Composite Membranes for Delivery of Insulin and Other Biomacromolecules,” J. Electrochem. Soc., 137:2005-2006 (1990). |