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Microfabricated electrophoresis devices, for

Microfabricated Electrophoresis Devices for High-Throughput Genetic Analysis Milestones and Challenges... [Pg.1277]

Skelley, A.M., Mathies, R.A., Chiral separation of fluorescamine-labeled amino acids using microfabricated capillary electrophoresis devices for extraterrestrial exploration. J. Chromatogr. A 2004, 1021, 191-199. [Pg.440]

Mogensen, K.B., Petersen, N.J., Hubner, J., Kutter, J.P., Monolithic integration of optical waveguides for absorbance detection in microfabricated electrophoresis devices. Electrophoresis 2001, 22(18), 3930-3938. [Pg.445]

DNA. As summarized above, microfabricated electrophoresis devices have been demonstrated to be a powerful tool in DNA analysis microchip electrophoresis techniques possess great potential for DNA-based drug analysis and will be a highly recommended separation tool for such purpose. [Pg.549]

Li, J., Kelly, J.F., Chernushevich, I., Harrison, D.J., and Thibault P., Separation and identification of peptides from gel-isolated membrane proteins using a microfabricated device for combined capillary electrophoresis/nanoelectro-spray mass spectrometry, Anal. Chem. 72, 599, 2000. [Pg.437]

Zhang, B., Fiu, H., Karger, B. L., and Foret, F. (1999). Microfabricated devices for capillary electrophoresis-electrospray mass spectrometry. Anal. Chem. 71, 3258—3264. [Pg.517]

Liang, Z., Chiem, N., Ocvirk, G., Tang, T., Fluri, K., Harrison, D.J., Microfabrication of a planar absorbance and fluorescence cell for integrated capillary electrophoresis devices. Anal. Chem. 1996, 68, 1040-1046. [Pg.443]

Arora, A., Eijkel, J.C.T., Morf, W.E., Manz, A., A wireless electrochemiluminescence detector applied to direct and indirect detection for electrophoresis on a microfabricated glass device. Anal. Chem. 2001, 73, 3282-3288. [Pg.446]

Shi et al. [98] introduced a pressurized capillary array system to simultaneously load 96 samples into 96 sample wells of a radial microchannel array electrophoresis microplate for high-throughput DNA sizing (Figure 13). As a result, 96 samples were analyzed in less than 90 s per microplate, demonstrating the power of microfabricated devices for large-scale and high-performance nucleic acid characterization. [Pg.305]

Wen J, Lin Y, Xiang F, Matson DW, Udseth HR, Smith RD. Microfabricated isoelectric focusing device for direct electrospray ionization-mass spectrometry. Electrophoresis 2000 21 191-197. [Pg.465]

Wen, J., Lin, Y, Xiang, R, Matson, D. W, Udseth, H. R., and Smith, R. D. Microfabricated isoelectric focusing device for direct electrospray ionization—mass spectrometry. Electrophoresis 21 191-197, 2000. [Pg.552]

Zhang, B. Liu, H. Karger, B.L. Foret, F. Microfabricated Devices for Capillary Electrophoresis-Electrospray Mass Spectrometry, Ana/. Chem. 71, 3258-3264 (1999). [Pg.69]


See other pages where Microfabricated electrophoresis devices, for is mentioned: [Pg.547]    [Pg.547]    [Pg.408]    [Pg.586]    [Pg.514]    [Pg.468]    [Pg.205]    [Pg.103]    [Pg.279]    [Pg.305]    [Pg.490]    [Pg.545]    [Pg.157]    [Pg.259]    [Pg.346]    [Pg.518]    [Pg.614]    [Pg.1013]    [Pg.1164]    [Pg.1288]   


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Microfabricated

Microfabricated devices

Microfabricated electrophoresis devices, for high-throughput genetic analysis

Microfabrication

Microfabrication devices

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