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Volumn 43, Issue 1, 2013, Pages 304-307
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A microfluidic system enabling continuous characterization of specific membrane capacitance and cytoplasm conductivity of single cells in suspension
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Author keywords
Cellular biophysics; Cytoplasm conductivity; Impedance spectroscopy; Microfluidics; Single cell analysis; Specific membrane capacitance
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Indexed keywords
CELL ELONGATION;
CELL LINES;
CELLULAR BIOPHYSICS;
CHANNEL WALL;
IMPEDANCE DATA;
IMPEDANCE SPECTROSCOPY;
LOCK-IN AMPLIFIER;
MICRO FLUIDIC SYSTEM;
MICROSCOPY IMAGING;
SINGLE CELLS;
SINGLECELL ANALYSIS;
TUMOR CELL LINES;
VASCULAR SMOOTH MUSCLE CELLS;
CAPACITANCE;
CELL CULTURE;
FLUIDIC DEVICES;
MEMBRANES;
MICROFLUIDICS;
SUSPENSIONS (COMPONENTS);
CELLS;
ARTICLE;
ASPIRATION;
CELL ELONGATION;
CELL MEMBRANE POTENTIAL;
CELL STRAIN 786 O;
CELLULAR PARAMETERS;
CELLULAR SEALING PROPERTY;
CYTOPLASM;
ELECTRIC CONDUCTIVITY;
EQUIPMENT DESIGN;
HUMAN;
HUMAN CELL;
IMAGE INTENSIFIER;
IMPEDANCE;
INTERMETHOD COMPARISON;
KIDNEY TUMOR;
LOCK IN AMPLIFIER;
MICROFLUIDIC ANALYSIS;
MICROSCOPY;
SINGLE CELL ANALYSIS;
SMOOTH MUSCLE FIBER;
TUMOR CELL LINE;
VASCULAR SMOOTH MUSCLE;
BIOSENSING TECHNIQUES;
CELL CULTURE TECHNIQUES;
CELL MEMBRANE;
CELL SEPARATION;
CONDUCTOMETRY;
CYTOPLASM;
ELECTRIC CAPACITANCE;
EQUIPMENT DESIGN;
EQUIPMENT FAILURE ANALYSIS;
MICROFLUIDIC ANALYTICAL TECHNIQUES;
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EID: 84872576991
PISSN: 09565663
EISSN: 18734235
Source Type: Journal
DOI: 10.1016/j.bios.2012.12.035 Document Type: Article |
Times cited : (55)
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References (14)
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