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Membrane biology / Cellular neuroscience / Cell communication / Voltage-sensitive dye / Action potential / Membrane potential / Neuron / Depolarization / Ion channel / Biology / Electrophysiology / Nervous system


Optically monitoring voltage in neurons by photoinduced electron transfer through molecular wires Evan W. Millera, John Y. Lina, E. Paxon Fradyb, Paul A. Steinbacha,c, William B. Kristan, Jr.d, and Roger Y. Tsiena,c,e,1
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Document Date: 2014-07-01 03:39:59


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City

La Jolla / Svec / Ratner / Jackson / Taylor / NEUROSCIENCE FRET / Bonneville / Pieribone / Siegel / New York / /

Company

Pharmacology / Cohen AE / PeT / VF / Palmer AE / P.A.S. / Kao / /

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Facility

Garner LE / Scale bar / Howard Hughes Medical Institute / Rink TJ / US National Institute of Neurological Disorders / cHoward Hughes Medical Institute / National Institute of Biomedical Imaging / University of California / /

IndustryTerm

energy levels / rational chemical modiļ¬cation / voltage imaging / chemical / imaging / aqueous solution / uorescence imaging / luorescence imaging / energy / /

MusicGroup

Sensitivity / /

Organization

National Science Foundation / Montana V / Department of Pharmacology / Biochemistry / and cHoward Hughes Medical Institute / University of California at San Diego / /

Person

Paul A. Steinbacha / David Kleinfeld / Jr / Roger Y. Tsien / John Y. Lina / Evan W. Millera / William B. Kristan / Jr. / Roger Y. Tsiena / /

Position

Author / uorescent reporter / forward / WB / reporter / /

ProvinceOrState

Alabama / Montana / Mississippi / California / New York / Massachusetts / Washington / /

Technology

NEUROSCIENCE / dielectric / recombination / /

URL

www.pnas.org/lookup/suppl/doi / www.pnas.org/cgi/doi/10.1073/pnas.1120694109 / /

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