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David J Beebe

Showing results (81-90 of 284) with videos related to

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Analytical Chemistry|January 19, 2013
Effect of microculture on cell metabolism and biochemistry: do cells get stressed in microchannels?Xiaojing Su, Ashleigh B Theberge, Craig T January, et al.
Integrative Biology : Quantitative Biosciences From Nano to Macro|November 4, 2017
RNA-mediated TILDA for improved cell capacity and enhanced detection of multiply-spliced HIV RNAHannah M Pezzi, Scott M Berry, David J Beebe, et al.
Nature Communications|February 7, 2024
Visualization-enhanced under-oil open microfluidic system for in situ characterization of multi-phase chemical reactionsQiyuan Chen, Hang Zhai, David J Beebe, et al.
Biosensors & Bioelectronics|July 24, 2010
Synaptotagmin II peptide-bead conjugate for botulinum toxin enrichment and detection in microchannelsMegan L Frisk, Guangyun Lin, Eric A Johnson, et al.
Lab on a Chip|March 3, 2006
Characterization of a membrane-based gradient generator for use in cell-signaling studiesVinay V Abhyankar, Mary A Lokuta, Anna Huttenlocher, et al.
Lab on a Chip|March 24, 2012
An inertia enhanced passive pumping mechanism for fluid flow in microfluidic devicesPedro J Resto, Erwin Berthier, David J Beebe, et al.
Frontiers in Oncology|April 25, 2022
Models of Renal Cell Carcinoma Used to Investigate Molecular Mechanisms and Develop New TherapeuticsDaniel D Shapiro, Maria Virumbrales-Muñoz, David J Beebe, et al.
The Journal of Biological Chemistry|June 9, 2012
The actin regulatory protein HS1 interacts with Arp2/3 and mediates efficient neutrophil chemotaxisPeter J Cavnar, Kevin Mogen, Erwin Berthier, et al.
Methods in Molecular Biology (Clifton, N.J.)|March 26, 2004
Mammalian embryo culture in a microfluidic deviceEric M Walters, Sherrie G Clark, David J Beebe, et al.
Analytical Chemistry|July 18, 2014
Fluorescence-based assessment of plasma-induced hydrophilicity in microfluidic devices via Nile Red adsorption and depletionDavid J Guckenberger, Erwin Berthier, Edmond W K Young, et al.
Pageof 29

Showing results (81-90 of 284) with videos related to

Sort By:
Pageof 29
Analytical Chemistry|January 19, 2013
Effect of microculture on cell metabolism and biochemistry: do cells get stressed in microchannels?Xiaojing Su, Ashleigh B Theberge, Craig T January, et al.
Integrative Biology : Quantitative Biosciences From Nano to Macro|November 4, 2017
RNA-mediated TILDA for improved cell capacity and enhanced detection of multiply-spliced HIV RNAHannah M Pezzi, Scott M Berry, David J Beebe, et al.
Nature Communications|February 7, 2024
Visualization-enhanced under-oil open microfluidic system for in situ characterization of multi-phase chemical reactionsQiyuan Chen, Hang Zhai, David J Beebe, et al.
Biosensors & Bioelectronics|July 24, 2010
Synaptotagmin II peptide-bead conjugate for botulinum toxin enrichment and detection in microchannelsMegan L Frisk, Guangyun Lin, Eric A Johnson, et al.
Lab on a Chip|March 3, 2006
Characterization of a membrane-based gradient generator for use in cell-signaling studiesVinay V Abhyankar, Mary A Lokuta, Anna Huttenlocher, et al.
Lab on a Chip|March 24, 2012
An inertia enhanced passive pumping mechanism for fluid flow in microfluidic devicesPedro J Resto, Erwin Berthier, David J Beebe, et al.
Frontiers in Oncology|April 25, 2022
Models of Renal Cell Carcinoma Used to Investigate Molecular Mechanisms and Develop New TherapeuticsDaniel D Shapiro, Maria Virumbrales-Muñoz, David J Beebe, et al.
The Journal of Biological Chemistry|June 9, 2012
The actin regulatory protein HS1 interacts with Arp2/3 and mediates efficient neutrophil chemotaxisPeter J Cavnar, Kevin Mogen, Erwin Berthier, et al.
Methods in Molecular Biology (Clifton, N.J.)|March 26, 2004
Mammalian embryo culture in a microfluidic deviceEric M Walters, Sherrie G Clark, David J Beebe, et al.
Analytical Chemistry|July 18, 2014
Fluorescence-based assessment of plasma-induced hydrophilicity in microfluidic devices via Nile Red adsorption and depletionDavid J Guckenberger, Erwin Berthier, Edmond W K Young, et al.
Pageof 29