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Chapter 7 Fluorescent Indicators of Membrane Potential: Microspectrofluorometry and Imaging
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title
Chapter 7 Fluorescent Indicators of Membrane Potential: Microspectrofluorometry and Imaging
(English)
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author name string
David Gross
series ordinal
1
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Leslie M. Loew
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2
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publication date
1989
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published in
Methods in Cell Biology
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page(s)
193-218
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cites work
Gap junctions increase the sensitivity of tissue cells to exogenous electric fields
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Membrane potential induced by external electric field pulses can be followed with a potentiometric dye.
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Membrane potential can be determined in individual cells from the nernstian distribution of cationic dyes
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Spectra, membrane binding, and potentiometric responses of new charge shift probes
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Real-time optical mapping of neuronal activity: from single growth cones to the intact mammalian brain
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Simultaneous optical monitoring of activity of many neurons in invertebrate ganglia using a 124-element photodiode array
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Simultaneous optical measurements of electrical activity from multiple sites on processes of cultured neurons
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Fluorescence monitoring of electrical responses from small neurons and their processes
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Theory of electromechanical effects in nerve
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Optical imaging of cell membrane potential changes induced by applied electric fields
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Electrical controls of development
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Charge-shift probes of membrane potential: a probable electrochromic mechanism for p-aminostyrylpyridinium probes on a hemispherical lipid bilayer
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Charge shift optical probes of membrane potential. Theory
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Evidence for a charge-shift electrochromic mechanism in a probe of membrane potential
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In situ electrophoresis of membrane components
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Optical recording of neuronal activity in an invertebrate central nervous system: simultaneous monitoring of several neurons
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Mouse macrophage Fc receptor for IgG gamma 2b/gamma 1 in artificial and plasma membrane vesicles functions as a ligand-dependent ionophore
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10.1016/S0091-679X(08)60980-2
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