Showing results (1-10 of 9) with videos related to
Sort By:
Pageof 1
Electrophoresis|December 5, 2008
Advantages and limitations of next-generation sequencing technologies: a comparison of electrophoresis and non-electrophoresis methodsDaniel G Hert, Christopher P Fredlake, Annelise E BarronElectrophoresis|December 5, 2008
DNA sequencing by microchip electrophoresis using mixtures of high- and low-molar mass poly(N,N-dimethylacrylamide) matricesDaniel G Hert, Christopher P Fredlake, Annelise E BarronElectrophoresis|October 13, 2006
What is the future of electrophoresis in large-scale genomic sequencing?Christopher P Fredlake, Daniel G Hert, Elaine R Mardis, et al.Electrophoresis|December 5, 2008
Polymer systems designed specifically for DNA sequencing by microchip electrophoresis: a comparison with commercially available materialsChristopher P Fredlake, Daniel G Hert, Brian E Root, et al.Electrophoresis|November 27, 2004
DNA sequencing and genotyping in miniaturized electrophoresis systemsCheuk-Wai Kan, Christopher P Fredlake, Erin A S Doherty, et al.Electrophoresis|July 8, 2009
DNA migration mechanism analyses for applications in capillary and microchip electrophoresisRyan E Forster, Daniel G Hert, Thomas N Chiesl, et al.Electrophoresis|December 5, 2008
Hydrophobically modified polyacrylamide block copolymers for fast, high-resolution DNA sequencing in microfluidic chipsRyan E Forster, Thomas N Chiesl, Christopher P Fredlake, et al.Electrophoresis|June 1, 2012
Divergent dispersion behavior of ssDNA fragments during microchip electrophoresis in pDMA and LPA entangled polymer networksChristopher P Fredlake, Daniel G Hert, Thomas P Niedringhaus, et al.Proceedings of the National Academy of Sciences of the United States of America|January 11, 2008
Ultrafast DNA sequencing on a microchip by a hybrid separation mechanism that gives 600 bases in 6.5 minutesChristopher P Fredlake, Daniel G Hert, Cheuk-Wai Kan, et al.Pageof 1