Unger et al Scienc evol. 288 pp. 113-116 Apr. 2000.* |
Angell, et al., “Silicon Micromechanical Devices,” Scientific American, Apr. 1983, 248: pp. 44-45. |
Joel S. Bader, et al., “DNA transport by a micromachined Brownian ratchet device,” PNAS, Nov. 9, 1999., vol. 96 (23), pp. 13165-13169. |
J. P. Brody, et al., “Low Reynolds number micro- fluidic devices,” In Proc. of Solid-State Sensor and Actuator Workshop, Jun. 1996, pp. 105-108. |
Castro, A., et al., “Fluorescence Detection and Size Measurement of Single DNA Molecules,” Analytical Chemistry, Apr. 1, 1993, vol. 65, pp. 849-852. |
N. H. Chiem, et al., “Microchip Systems for Immunoassay: an Integrated Immunoreactor with Electrophoretic Separation for Serum Theophylline Determination,” Clinical Chemistry, (1998), vol. 44, No. 3, p. 591. |
Hou-Pu Chou, et al., “A microfabricated device for sizing and sorting DNA molecules,” PNAS, Jan. 1999, vol. 96, pp. 11-13. |
E. Delamarche, et al., “Patterned Delivery of Immunoglobulins to Surfaces Using Microfluidic Networks,” Science, May 2, 1997, vol. 276, pp. 779-781. |
S. Fiedler, et al., “Dielectrophoretic Sorting of Particles and Cells in a Microsystem,” Analytical Chemistry, May, 1, 1998, vol. 70, pp. 1909-1915. |
A. Y. Fu, et al., “A Microfabricated Fluorescence-Activated Cell Sorter,” Nature Biotechnology, Nov. 1999, vol. 17, pp. 1109-1111. |
Goodwin, P.M., et al., “Rapid sizing of individual fluorescently stained DNA fragments by flow cytometry,” Nucleic Acids Research, 1993, vol. 21, No. 4, pp. 803-806. |
D.J. Harrison, et al., “Micromachining a Miniaturized Cappillary Electrophoresis-Based Chemical Analysis System on a Chip,” Science, Aug. 13, 1993, vol. 26, pp. 895-897. |
R. S. Kane, et al., “Patterning Proteins and Cells Using Soft Lithography,” Biomaterials, 1999, vol. 20, pp. 2363-2376. |
M. U. Kopp, et al., “Chemical amplification: Continuous-flow PCR on a chip,” Science, May 15, 1998, vol. 280 (5366), pp. 1046-1048. |
P. H. Li, D. J. Harrison, Analytical Chemistry 69, 1564 (1997). |
J. P. Nolan, et al., “The emergence of flow cytometry for sensitive, real-time measurements of molecular interactions,” Nature Biotechnology, Jul., 1998, vol. 16, pp. 633-638. |
M. A. Unger, et al., “Monolithic Microfabricated Valves and Pumps Using Multi-layer Soft Lithography,” Science, Apr. 2000, vol. 288, (5463): pp. 113-116. |
Alan Van Orden, et al., “High-throughput flow cytometric DNA fragment sizing,” Anal. Chem., Jan. 1, 2000, vol. 72 (1), pp. 37-41. |
L. C. Waters, et al., “Microchip devices for cell lysis, multiplex PCR amplification, and electrophoretic sizing,” Analytical Chemistry., Jan. 1, 1998, vol. 70, No. 1, pp. 158-162. |
G. Whitesides, Y. Xia, “Soft Lithography,” Angewandte Chemie International Edition 37, 1998, vol. 37, pp. 550-575. |
A. T. Woolley, et al., “Capillary Electrophoresis Chips with Integrated Electrochemical Detection,” Analytical Chemistry, Feb. 15, 1998, vol. 70, No. 4, pp. 684-688. |