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Lab on a Chip|April 25, 2008
Automated cell culture in high density tubeless microfluidic device arraysIvar Meyvantsson, Jay W Warrick, Steven Hayes, et al.Nature Communications|June 2, 2022
A role for microfluidic systems in precision medicineJose M Ayuso, María Virumbrales-Muñoz, Joshua M Lang, et al.Biomacromolecules|October 30, 2010
Development of macroporous poly(ethylene glycol) hydrogel arrays within microfluidic channelsAndrew G Lee, Christopher P Arena, David J Beebe, et al.Analytical Chemistry|March 4, 2009
Self-assembled peptide monolayers as a toxin sensing mechanism within arrayed microchannelsMegan L Frisk, William H Tepp, Eric A Johnson, et al.Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|August 13, 2004
An externally driven magnetic microstirrerGlennys A Mensing, Thomas M Pearce, Michael D Graham, et al.Bio-Protocol|October 31, 2022
Enhanced Ribonucleoprotein Immunoprecipitation (RIP) Technique for the Identification of mRNA Species in Ribonucleoprotein ComplexesSaja A Fakhraldeen, Scott M Berry, David J Beebe, et al.Biomedical Microdevices|January 15, 2009
Infection on a chip: a microscale platform for simple and sensitive cell-based virus assaysYing Zhu, Jay W Warrick, Kathryn Haubert, et al.Lab on a Chip|August 23, 2018
Surface topography and hydrophilicity regulate macrophage phenotype in milled microfluidic systemsDavid Kosoff, Jiaquan Yu, Vikram Suresh, et al.Analytical Chemistry|June 14, 2014
Efficient sample preparation from complex biological samples using a sliding lid for immobilized droplet extractionsBenjamin P Casavant, David J Guckenberger, David J Beebe, et al.Integrative Biology : Quantitative Biosciences From Nano to Macro|January 24, 2013
Enabling screening in 3D microenvironments: probing matrix and stromal effects on the morphology and proliferation of T47D breast carcinoma cellsSara I Montanez-Sauri, Kyung Eun Sung, Erwin Berthier, et al.Pageof 29