Indexed keywords
CALCIUM;
ETHYLENE GLYCOL 1,2 BIS(2 AMINOPHENYL) ETHER N,N,N',N' TETRAACETIC ACID;
ETHYLENE GLYCOL 1,2 BIS(2 AMINOPHENYL) ETHER N,N,N',N' TETRAACETIC ACID 1 ACETOXYMETHYL ESTER;
FLUORESCENT DYE;
OREGON GREEN 488 BAPTA 1 AM;
UNCLASSIFIED DRUG;
ABDOMINAL GANGLION;
ANATOMY;
ANIMAL EXPERIMENT;
ARTICLE;
BRAIN MAPPING;
CALCIUM SIGNALING;
CONTROLLED STUDY;
CRICKET;
ELECTROSTIMULATION;
ENVIRONMENTAL FACTOR;
FEMALE;
INSECT;
NEUROPHYSIOLOGY;
NONHUMAN;
PRIORITY JOURNAL;
SENSORY NERVE;
SENSORY STIMULATION;
SENSORY SYSTEM;
SIGNAL PROCESSING;
STAINING;
AIR MOVEMENTS;
ANIMALS;
CALCIUM;
DIAGNOSTIC IMAGING;
ELECTRIC STIMULATION;
FEMALE;
FLUORESCENT DYES;
GANGLIA, INVERTEBRATE;
GANGLIA, SENSORY;
GRYLLIDAE;
IMAGE PROCESSING, COMPUTER-ASSISTED;
MECHANORECEPTORS;
MICROINJECTIONS;
NEURONS, AFFERENT;
STAINING AND LABELING;
1
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Anatomical relationships between sensory afferent arborizations in the cricket cercal system
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Functional organization of a neural map in the cricket cercal sensory system
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Extraction of sensory parameters from a neural map by primary sensory interneurons
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Low-frequency airborne vibrations generated by crickets during singing and aggression
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Oscillation of cricket sensory hairs in a low-frequency sound field
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A threshold analysis of cricket cercal interneurons by an alternating air-current stimulus
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Voltage-activated currents in identified giant interneurons isolated from adult crickets Gryllus bimaculatus
Kloppenburg P, Hörner M. 1998. Voltage-activated currents in identified giant interneurons isolated from adult crickets Gryllus bimaculatus. J Exp Biol 201:2529-2541.
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Direction sensitivity of the filiform hair population of the cricket cercal system
Landolfa MA, Jacobs GA. 1995. Direction sensitivity of the filiform hair population of the cricket cercal system. J Comp Physiol A 177:759-766.
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Stimulus-response properties of cricket cercal filiform receptors
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Representation of Sensory Information in the Cricket Cercal Sensory System. I. Response Properties of the Primary Interneurons
Miller JP, Jacobs GA, Theunissen FE. 1991. Representation of Sensory Information in the Cricket Cercal Sensory System. I. Response Properties of the Primary Interneurons. J Neurophysiol 66:1680-1689.
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16
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Competition controls the growth of an identified axonal arborization
Murphey RK, Lemere CA. 1984. Competition controls the growth of an identified axonal arborization. Science 224:1352-1355.
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Murphey, R.K.1
Lemere, C.A.2
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2+ transient increase evoked by air current stimulus in the cricket giant interneuron
2+ transient increase evoked by air current stimulus in the cricket giant interneuron. Neurosci Lett 275:61-64.
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18
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Dendritic calcium accumulation regulates wind sensitivity via short-term depression at cercal-to-giant interneuron synapses in the cricket
Ogawa H, Baba Y, Oka K. 2001. Dendritic calcium accumulation regulates wind sensitivity via short-term depression at cercal-to-giant interneuron synapses in the cricket. J Neurobiol 46:301-313.
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Directional sensitivity of dendritic calcium responses to air current stimuli in cricket giant interneurons
Ogawa H, Baba Y, Oka K. 2004. Directional sensitivity of dendritic calcium responses to air current stimuli in cricket giant interneurons. Neurosci Lett 358:185-188.
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Neural mapping of direction and frequency in the cricket cercal system
Paydar S, Doan CA, Jacobs GA. 1999. Neural mapping of direction and frequency in the cricket cercal system. J Neurosci 19:1771-1781.
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Information theoretic analysis of dynamical encoding by filiform mechanoreceptors in the cricket cercal system
Roddey JC, Jacobs GA. 1996. Information theoretic analysis of dynamical encoding by filiform mechanoreceptors in the cricket cercal system. J Neurophysiol 75:1365-1376.
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Varieties of filiform hairs: Range fractionation by sensory afferents and cercal interneurons of a cricket
Shimozawa T, Kanou M. 1984a. Varieties of filiform hairs: range fractionation by sensory afferents and cercal interneurons of a cricket. J Comp Physiol A 155:485-493.
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The aerodynamics and sensory physiology of range fractionation in the cercal filiform sensilla of the cricket Gryllus bimaculatus
Shimozawa T, Kanou M. 1984b. The aerodynamics and sensory physiology of range fractionation in the cercal filiform sensilla of the cricket Gryllus bimaculatus. J Comp Physiol A 155:495-505.
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Dendritic integration and its role in computing image velocity
Single S, Borst A. 1998. Dendritic integration and its role in computing image velocity. Science 281:1848-1850.
(1998)
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Information Theoretic Analysis of Dynamical Encoding by Four Primary Sensory Interneurons in the Cricket Cercal System
Theunissen F, Roddey JC, Stufflebeam S, Clague H, Miller JP. 1996. Information Theoretic Analysis of Dynamical Encoding by Four Primary Sensory Interneurons in the Cricket Cercal System. J Neurophysiol 75:1345-1364.
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26
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Construction and analysis of a data base representing a neural map
Troyer TW, Levin JE, Jacobs GA. 1994. Construction and analysis of a data base representing a neural map. Microsc Res Tech 29:329-343.
(1994)
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27
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Reading between the spikes in the cercal filiform hair receptors of the cricket
Eeckman FH, editor. Boston: Kluwer Academic Publishers
Warland D, Landolfa MA, Miller JP, Bialek W. 1991. Reading between the spikes in the cercal filiform hair receptors of the cricket. In: Eeckman FH, editor. Analysis and modeling of neural systems. Boston: Kluwer Academic Publishers, p 327-333.
(1991)
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Warland, D.1
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Miller, J.P.3
Bialek, W.4