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Volumn 40, Issue 1, 2013, Pages 174-179
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Impedance sensing and molecular modeling of an olfactory biosensor based on chemosensory proteins of honeybee
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Author keywords
Chemosensory protein; Honeybee; Impedance; Molecular modeling; Olfactory biosensor
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Indexed keywords
CHARGE TRANSFER RESISTANCE;
CHEMOSENSORY PROTEINS;
COMPLEX ENVIRONMENTS;
CONSERVED RESIDUES;
HONEYBEE;
IMPEDANCE DETECTION;
IMPEDANCE SENSING;
IMPEDANCE SPECTROSCOPY;
LIGAND CONCENTRATION;
LOW CONCENTRATIONS;
MOLECULAR DOCKING;
MOLECULAR SENSING;
PROTEIN-LIGAND INTERACTIONS;
TERTIARY STRUCTURES;
CHARGE TRANSFER;
ELECTRIC IMPEDANCE;
HYDROGEN BONDS;
LIGANDS;
MOLECULAR MODELING;
MOLECULAR RECOGNITION;
PROTEINS;
BIOSENSORS;
CHEMOSENSORY PROTEIN;
INSECT PROTEIN;
UNCLASSIFIED DRUG;
ACCURACY;
ARTICLE;
BINDING AFFINITY;
BIOSENSOR;
CONCENTRATION (PARAMETERS);
ELECTROCHEMICAL IMPEDANCE SPECTROSCOPY;
HONEYBEE;
HYDROGEN BOND;
LIGAND BINDING;
MOLECULAR DOCKING;
MOLECULAR INTERACTION;
MOLECULAR MODEL;
MOLECULAR RECOGNITION;
NONHUMAN;
PROTEIN TERTIARY STRUCTURE;
SENSITIVITY AND SPECIFICITY;
ANIMALS;
BEES;
BIOMIMETIC MATERIALS;
COMPUTER SIMULATION;
DIELECTRIC SPECTROSCOPY;
EQUIPMENT DESIGN;
EQUIPMENT FAILURE ANALYSIS;
INSECT PROTEINS;
MODELS, CHEMICAL;
MOLECULAR DOCKING SIMULATION;
ODORS;
PHEROMONES;
REPRODUCIBILITY OF RESULTS;
SENSITIVITY AND SPECIFICITY;
SMELL;
APIS MELLIFERA;
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EID: 84868666069
PISSN: 09565663
EISSN: 18734235
Source Type: Journal
DOI: 10.1016/j.bios.2012.07.011 Document Type: Article |
Times cited : (60)
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References (28)
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