Freier, S.M. et al., “Improved free-energy parameters for predictions of RNA duplex stability”, PNAS vol. 83, pp. 9373-9377 (1986).* |
Jolley, M.E., et al., “Fluorescence Polarization Immunoassay. III. An Automated System for Therapeutic Drug Determination,” Clin. Chem., 27(9) :1575-1579 (1981). |
Popelka, S.R., et al., “Fluorescence Polarization Immunoassay II. Analyzer for Rapid, Precise Measurement of Fluorescence Polarization with Use of Disposable Cuvettes,” Clin. Chem., 27(7) :1198-1201 (1981). |
Dandliker, W.B., et al., “Fluorescence Polarization Immunoassay. Theory and Experimental Method,” Immunochemistry, 10:219-227 (1973). |
Dandliker, W.B., and de Saussure, V.A., “Fluorescence Polarization in Immunochemistry,” Immunochemistry, 7:799-828 (1970). |
Jolley, M.E., “Fluorescence Polarization Immunoassay for the Determination of Therapeutic Drug Levels in Human Plasma,” J. of Analytical Toxicology, 5:236-240 (1981). |
Chen, X., et al., “Fluorescence Energy Transfer Detection as a Homogeneous DNA Diagnostic Method,” Proc. Natl. Acad. Sci USA, 94:10756-10761 (1997). |
Chen, X., et al., “Fluorescence Polarization in Homogeneous Nucleic Acid Analysis,” Genome Research, 9:492-498 (1999). |
Rychlik, W., “Selection of Primers for Polymerase Chain Reaction,” Molecular Biotechnology, 3 (2) :129-134 (1995). |
Lowe, T., et al., “A Computer Program for Selection of Oligonucleotide Primers for Polymerase Chain Reactions,” Nucleic Acids Research, 18 (7) :1757-1761 (1990). |
Rychlik, W., and Rhoads, R.E., “A Computer Program for Choosing Optimal Oligonucleotides for Filter Hybridization, Sequencing and In Vitro Amplification of DNA,” Nucleic Acids Research, 17 (21) :8543-8551 (1989). |