Niemeyer Angew Chem. Int. Ed Engl. 36: 585-587 (of interest), 1997.* |
Dagani C& EN pp. 20-23 (of interest), Dec. 2, 1996.* |
Stroscio et al. Science 254: 1319-1326 (of interest), 1991.* |
Whitesides et al. Science 254:1312-1318 (of interest), 1994.* |
Callahan et al., Electronics Letters, 29, pp 951-953, 1993.* |
Matthews et al., Analytical Biochemistry, vol. 169, pp 1-25, 1988.* |
Misiura et al., Nucleic Acids Research, vol. 18, No. 15, pp. 4345-4354, 1990.* |
Mizuno, “The Organic Chemistry of Nucleic Acids”, [published by Elsevier, Tokyo, (1986)] pp. 181-200.* |
Anand and Southern “Pulsed Field Gel Electrophoresis,” Gel Electrophoresis of Nucleic Acids—A Practical Approach, 2d. Ed., D. Rickwood and B.D. Hames (New York:IRL Press 1990), pp 101-123. |
Anderson and Young, “Quantitative Filter Hybridization,” Nucleic Acid Hybridization—A Practical Approach, Eds. B.D. Hames and S.J. Higgins (Washington, D.C. :IRL Press 1985) pp 73-111. |
Baines, “Setting a Sequence to Sequence a Sequence,” Bio/Technology, 10:757-758 (1992). |
Barinaga, “Will ‘DNA Chip’ Speed Genome Initiative?”, Science, 253:1489 (1991). |
Beattie et al., “Genosensor Technology,” The 1992 San Diego Conference: Genetic Recognition, pp 1-5 (Nov., 1992). |
Beltz et al., “Isolation of Multigene Families and Determination of Homologies by Filter Hybridization Methods,” Methods in Enzymology, 100:266-285 (1983). |
Connor et al., “Detection of Sickle Cell β3-Globin Allele by Hybridization With Synthetic Oligonucleotides,” Proc. Natl. Acad. Sci. USA, 80:278-282 (1983). |
Drmanac et al., “Sequencing of Megabase Plus DNA by Hybridization: Theory of the Method,” Genomics, 4:114-128 (1989). |
Drmanac et al., “DNA Sequence Determination by Hybridixation: A Strategy for Efficient Large-Scale Sequencing,” Science, 260: 1649-1652 (1993). |
Fodor et al., “Multiplexed Biochemical Assays With Biological Chips,” Nature, 364:555-556 (1993). |
Fodor et al., “Light-Directed, Spatially Addressable Parallel Chemical Synthesis,” Science, 251:767-773 (1991). |
Horejsi, “Some Theoretical Aspects of Affinity Electrophoresis,” Journal of Chromatography, 178:1-13 (1979). |
Horjsi et al., Determination of Dissociation Constants of Lectin Sugar Complexes by Means of Affinity Electrophoresis, Biochimica at Biophysica Acta, 499:200-300 (1977). |
Ranki et al., “Sandwich Hybridization as a Convenient Method for the Detection of Nucleic Acids in Crude Samples,” Gene, 21:77-85 (1983). |
Saiki, “Amplification of Genomic DNA,” PCR Protocols: A Guide to Methods and Applications, (Academic Press, Inc. 1990), pp 13-20. |
Southern et al., “Analyzing and Comparing Nucleic Acid Sequences by Hybridization to Arrays of Oligonucleotides Evaluation Using Experimental Models,” Genomics, 13:1008-1017 (1992). |
Strezoska et al., “DNA Sequencing by Hybridization: 100 Bases Read by a Non-Gel-Based Method”, Proc. Natl. Acad. Sci. USA, 88:10089-93 (1991). |
Wallace et al., “Hybridization of Synthetic Oligodcoxyribonucleotides to Φx 174 DNA: The Effect of Single Base Pair Mismatch,” Nucleic Acid Res., 6:3543-3557 (1979). |
Washizu, “Electrostatic Manipulation of Biological Objects,” Journal of Electrostatics, 25:109-123 (1990). |
Washizu and Kurosawa, “Electrostatic Manipulation of DNA in Microfabricated Structures,” IEEE Transactions on Industry Applications, 26:1165-1172 (1990). |
Brown et al., “Electrochemically Induced Adsorption of Radio-Labelled DNA on Gold and HOPG Substrates for STM Investigations,” Ultramicroscopy, 38 (1991) pp 253-264. |
Palacek, “New Trends in Electrochemical Analysis of Nucleic Acids”, Bioelectrochemistry and Bioenergetics, 20 (1988) pp 179-194. |
Kornberg, Arthur, “DNA Synthesis”, 1974. |
Cardullo et al., Proc. Nat. Acad. Sci. USA, 85:8790-8794 (1988). |
Garner et al, Anal. Chem., 62:2193-2198 (1990). |
Haddon et al., Proc. Natl. Acad. Sci. USA, 92:1874-1878 (1985). |
Heller et al., “Rapid Detection and Infection of Infectious Diseases”, Kingsbury et al., eds. Acad Pr, NY, pp 245-256 (1985). |
Hopfield et al., Science 241:817-820 (1988). |
Keller et al., “DNA Probes”, pp 104-108, Stockton Press, N.Y. (1989). |
McAlear et al., “Molecular Electronic Devices II”, pp 623-633, Carter, e.d., Marcel Dekker, Inc., N.Y. (1987). |
Morrison et al., Anal. Biochem., 183:231-244 (1989). |
Robinson et al., Protein Eng., 1:295-300 (1987). |
Glazer et al., Emerging Techniques Physofluor Probes, Trends in Biochemical Sciences, vol. 9, No. 10, pp 423 (1984). |
Halfhill, Tom, R., “New Memory Architectures to Boost Performance”, Byte, Jul., 1993, pp 86-87. |
“An Active Microelectronic Device for Multiplex DNA Analysis”, IEEE Engineering in Medicine and Biology, pp 100-104, Mar./Apr. 1996. |
“Use of Thiazole Orange Homodimer as an Alternative to Ethidium Bromide for DNA Detection in Agarose Gels”, Modern Pathology, vol. 7, #3, pp 385-387 (1994). |
“Oncogene Amplification Screening by Labeled Primer Multiplex Polymerization Chain Reaction”, Modern Pathology, vol. 7, #7, pp 784-789 (1994). |
Heller, M.J. et al., “Fluorescent Detection Methods in PCR Analysis”, The Polymerase Chain Reaction, Mullis et al. eds., Birkhanuser, 1994. |
Heller, M.J. et al, “Microelectrophoresis for the Separation of DNA Fragments,” Electrophoresis, #13, pp 512-520 (1992). |
“Multiplex Polymerase Chain Reaction”, Modern Pathology, v. 5, #3, pp 320-323, 1992. |
Heller et al., “Self-Organizing Structures Based on Functionalized Synthetic Nucleic Acid Polymers”, Nanotechnology, #2, pp 165-171 (1991). |
Heller et al., “Chemiluminescent and Fluorescent DNA Probes in Hybridization Systems”, Rapid Detection and Identification of Infectious Agents, Kingsbury et al. eds., Academic Press, New York, pp 345-365 (1985). |
Heller et al., “Interactions of Miracil D with Double-Stranded Polyadenylic Acid and Polyuridylic Acid”, Biochemistry, vol. 13, 1623, 1974. |
Tu et al., “Structure and Stability of Metal Nucleoside Phosphate Complexes”, Metal Ions and Biological Systems, e.d. Siegel, vol. 1, Ch 1, Marcel Dekker, Inc. 1974. |
Heller et al., “Interaction of Divalent Manganese Ion With Adenosine Triphosphate and Related Compounds”, Biochemistry. vol. 9, #25, 4970, 1970. |
Esener et al, “Punch-Through Current Under Diffusion Limited Injection: Analysis and Applications,”, J. Appl. Phys. (12), pp 1380-87, Aug. 1985. |
Esener et al., “Design Considerations for Three-Terminal Optically Addressed MQW Spatial Light Modulators,” presented at the Annual Meeting of OSA, at Seattle, Oct., 1986. |
Esener et al.. “One-Dimension Silicon/PLZT Spatial Light Modulators,” Opt. Eng. 26, (5) pp 406-413, May 1987, also in Proc. SPIE Annual Meeting in San Diego, Aug. 1986. |
Feldman et al, “A Comparison of Electrical and Free Space Optical Interconnections,” Appln. Opt. 27, pp 1742-51, 1988. |
Lin et al., “Two-Dimensional Spatial Light Modulators Fabricated in Si/PLZT,” Appl. Opt. 29 (11) 1595, Apr. 1990. |
Krishnakumar et al., “Deposition and Characterization of Thin Ferroelectric Lead Lanthanum Zirconate Titanate (PLZT) Films on Sapphire for Spatial Light Modulators Applications”, IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control, 38 (6), pp 585-90, Nov., 1991. |
Fan et al., “Fundamental Bandgap and Schottky Barrier Height of Quaternary InAlGaAs Grown on GaAs,” MRS Meeting, Spring, 1992. |
Fan et al., “Quantum-Confined Stark Effect Modulators at 1.06 μm on GaAs”, Accepted for publication IEEE Photonics Technology Letter, Dec., 1993. |
Yu et al., “A Novel InGaAs PIN Photodiode on Semi-Insulating InP”, Optical and Quantum Electronics, 18, pp 174-177, 1986. |
Yu et al., “High-Speed, Self-Passivated InGaAs PIN Photodiode for Microwave Fiber Links”, Electron. Lett., 23, pp 571-572, 1987. |
Yu et al., “Self-Aligned Diffusion Technique for n-Imp JFETs”, Electron. Lett., 23, pp 981-982, 1987. |
Lee et al., “Interfacial Properties of InAlAs/InGaAs HIGHFETs and MIS Capacitors”, Semiconductor Science and Technology, 5, pp 716-720, 1990. |
Krishnakumar et al., “Deposition and Characterization of Thin Ferroelectric Lead lanthanum Zirconate Titanate (PLZT) Films on Sapphire for Spatial Light Modulators Applications”, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control, 38 (6), pp 585-590, Nov., 1991. |
Shih et al., “Quantum-Confined Stark Effective Modulators at 1.06 μm on GaAs”, IEEE Photonics Technology Letter, 5, No. 12, pp 1383-1385, Dec. 1993. |
Shih et al., “Integration of InAlGaAs/InGaAs MODFETs on MQW Modulators on GaAs Substrates”, Electronics Letters, 30 No. 20, Sep. 1994. |
Mansoorian et al., “A Comparison of Transmitter Technologies for Digital Free-Space Optical Interconnections”, Submitted to Applied Optics, Jul. 1994. |
Heller, M.J., “An Active Microelectronics Device for Multiplex DNA Analysis”, IEEE Engineering in Medicine and Biology Magazine, vol. 15, No. 2, Mar. 1, 1996, pp 100-104. |