The chemistrode: A droplet-based microfluidic device for stimulation and recording with high temporal, spatial, and chemical resolution
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Rustem F Ismagilov | Wenbin Du | Louis H Philipson | Delai L Chen | R. Ismagilov | A. Kuznetsov | L. Philipson | Wenbin Du | Y. Liu | Weishan Liu | Weishan Liu | Delai Chen | Andrey Kuznetsov | Ying Liu | Felipe E Mendez
[1] R. Wightman. Probing Cellular Chemistry in Biological Systems with Microelectrodes , 2006, Science.
[2] Helen Song,et al. Controlling nonspecific protein adsorption in a plug-based microfluidic system by controlling interfacial chemistry using fluorous-phase surfactants. , 2005, Analytical chemistry.
[3] Mark M Davis,et al. T cells use two directionally distinct pathways for cytokine secretion , 2006, Nature Immunology.
[4] Thomas W Vickroy,et al. In vivo monitoring of amino acids by direct sampling of brain extracellular fluid at ultralow flow rates and capillary electrophoresis , 2002, Journal of Neuroscience Methods.
[5] D. Steiner,et al. Direct imaging shows that insulin granule exocytosis occurs by complete vesicle fusion. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[6] Helen Song,et al. A microfluidic system for controlling reaction networks in time. , 2003, Angewandte Chemie.
[7] Brian J. Adzima,et al. Institute of Physics Publishing Journal of Micromechanics and Microengineering Pressure Drops for Droplet Flows in Microfluidic Channels , 2022 .
[8] Rustem F Ismagilov,et al. A microfluidic approach for screening submicroliter volumes against multiple reagents by using preformed arrays of nanoliter plugs in a three-phase liquid/liquid/gas flow. , 2005, Angewandte Chemie.
[9] Helen Song,et al. Formation of droplets and mixing in multiphase microfluidics at low values of the Reynolds and the capillary numbers , 2003 .
[10] Liang Li,et al. Using a multijunction microfluidic device to inject substrate into an array of preformed plugs without cross-contamination: comparing theory and experiments. , 2007, Analytical chemistry.
[11] Luke P. Lee,et al. Soft-state biomicrofluidic pulse generator for single cell analysis , 2006 .
[12] Jérôme Bibette,et al. Emulsions: basic principles , 1999 .
[13] D. Weitz,et al. Electric control of droplets in microfluidic devices. , 2006, Angewandte Chemie.
[14] Monpichar Srisa-Art,et al. Microdroplets: a sea of applications? , 2008, Lab on a chip.
[15] C. Bertozzi,et al. A cell nanoinjector based on carbon nanotubes , 2007, Proceedings of the National Academy of Sciences.
[16] G. Whitesides,et al. Formation of droplets and bubbles in a microfluidic T-junction-scaling and mechanism of break-up. , 2006, Lab on a chip.
[17] Turbulence Energy Principles for Quasi‐Normal and Wiener—Hermite Expansions , 1965 .
[18] M. Roeffaers,et al. Spatially resolved observation of crystal-face-dependent catalysis by single turnover counting , 2006, Nature.
[19] Wilhelm T S Huck,et al. Surface-induced droplet fusion in microfluidic devices. , 2007, Lab on a chip.
[20] Daniel T Chiu,et al. Microfluidic and optical systems for the on-demand generation and manipulation of single femtoliter-volume aqueous droplets. , 2006, Analytical chemistry.
[21] P. Schwille,et al. Fluorescence correlation spectroscopy: novel variations of an established technique. , 2007, Annual review of biophysics and biomolecular structure.
[22] R. Ismagilov,et al. Modular chemical mechanism predicts spatiotemporal dynamics of initiation in the complex network of hemostasis , 2006, Proceedings of the National Academy of Sciences.
[23] Robert T Kennedy,et al. Improved temporal resolution for in vivo microdialysis by using segmented flow. , 2008, Analytical chemistry.
[24] Helen Song,et al. Reactions in droplets in microfluidic channels. , 2006, Angewandte Chemie.
[25] K. Jensen,et al. Cells on chips , 2006, Nature.
[26] David Juncker,et al. Multipurpose microfluidic probe , 2005, Nature materials.
[27] Robin H. Liu,et al. Functional hydrogel structures for autonomous flow control inside microfluidic channels , 2000, Nature.
[28] G. Whitesides,et al. Rapid Prototyping of Microfluidic Systems in Poly(dimethylsiloxane). , 1998, Analytical chemistry.
[29] David N. Adamson,et al. Production of arrays of chemically distinct nanolitre plugs via repeated splitting in microfluidic devices. , 2006, Lab on a chip.
[30] K. Stebe,et al. Marangoni Effects On Drop Deformation In AnExtensional Flow: The Role Of Surfactant PhysicalChemistry , 1970 .
[31] K. Stebe,et al. Marangoni effects on drop deformation in an extensional flow: The role of surfactant physical chemistry. I. Insoluble surfactants , 1996 .
[32] Rustem F Ismagilov,et al. Can we build synthetic, multicellular systems by controlling developmental signaling in space and time? , 2007, Current opinion in chemical biology.
[33] Daniel Mandler,et al. Parathion Sensor Based on Molecularly Imprinted Sol−Gel Films , 2004 .
[34] Nicholas A. Cellar,et al. Microfluidic chip for low-flow push-pull perfusion sampling in vivo with on-line analysis of amino acids. , 2005, Analytical chemistry.
[35] S. Matsumoto,et al. Perfluorocarbon for organ preservation before transplantation. , 2002, Transplantation.
[36] D. Beebe,et al. Controlled microfluidic interfaces , 2005, Nature.
[37] P. Burgers,et al. Derivatization of small oligosaccharides prior to analysis by matrix-assisted laser desorption/ionization using glycidyltrimethylammonium chloride and Girard's reagent T. , 2002, Rapid communications in mass spectrometry : RCM.
[38] John F. Dishinger,et al. Serial immunoassays in parallel on a microfluidic chip for monitoring hormone secretion from living cells. , 2007, Analytical chemistry.
[39] Stephen D. Shea,et al. Basal Forebrain Cholinergic Modulation of Auditory Activity in the Zebra Finch Song System , 2003, Neuron.
[40] D. Frenkel,et al. Molecular simulations of droplet coalescence in oil/water/surfactant systems. , 2007, The Journal of chemical physics.
[41] K. Jensen,et al. Multistep continuous-flow microchemical synthesis involving multiple reactions and separations. , 2007, Angewandte Chemie.
[42] J. Sweedler,et al. The chemistry of thought: neurotransmitters in the brain. , 2004, Analytical chemistry.
[43] G M Whitesides,et al. Fabrication of topologically complex three-dimensional microfluidic systems in PDMS by rapid prototyping. , 2000, Analytical chemistry.
[44] R Langer,et al. Responsive polymeric delivery systems. , 2001, Advanced drug delivery reviews.
[45] Delai L Chen,et al. Microgram-scale testing of reaction conditions in solution using nanoliter plugs in microfluidics with detection by MALDI-MS. , 2006, Journal of the American Chemical Society.
[46] S. Quake,et al. Monolithic microfabricated valves and pumps by multilayer soft lithography. , 2000, Science.
[47] B. Sakmann,et al. Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patches , 1981, Pflügers Archiv.
[48] D. Hubel,et al. Receptive fields of single neurones in the cat's striate cortex , 1959, The Journal of physiology.
[49] H. Stone,et al. Formation of dispersions using “flow focusing” in microchannels , 2003 .
[50] George M. Whitesides,et al. Laminar flows: Subcellular positioning of small molecules , 2001, Nature.
[51] David W Piston,et al. Microfluidic glucose stimulation reveals limited coordination of intracellular Ca2+ activity oscillations in pancreatic islets. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[52] Liang Li,et al. Nanoliter microfluidic hybrid method for simultaneous screening and optimization validated with crystallization of membrane proteins , 2006, Proceedings of the National Academy of Sciences.
[53] O. Orwar,et al. A chemical waveform synthesizer. , 2005, Proceedings of the National Academy of Sciences of the United States of America.