In vivo calcium imaging of brain activity in Drosophila by transgenic cameleon expression.
about
In vivo bioluminescence imaging of Ca signalling in the brain of DrosophilaA combined perceptual, physico-chemical, and imaging approach to 'odour-distances' suggests a categorizing function of the Drosophila antennal lobeIdentification of novel vibration- and deflection-sensitive neuronal subgroups in Johnston's organ of the fruit fly.Selectivity and plasticity in a sound-evoked male-male interaction in Drosophila.Imaging cellular signals in the heart in vivo: Cardiac expression of the high-signal Ca2+ indicator GCaMP2.Fragile X mental retardation protein is required for programmed cell death and clearance of developmentally-transient peptidergic neurons.Genetically targeted optical electrophysiology in intact neural circuits.The fragile X mental retardation protein developmentally regulates the strength and fidelity of calcium signaling in Drosophila mushroom body neuronsSynchronous Drosophila circadian pacemakers display nonsynchronous Ca²⁺ rhythms in vivoCalcium-stores mediate adaptation in axon terminals of olfactory receptor neurons in Drosophila.Protein biosensors based on the principle of fluorescence resonance energy transfer for monitoring cellular dynamics.Genetically encoded Ca2+ indicators: using genetics and molecular design to understand complex physiology.Uracil-induced signaling pathways for DUOX-dependent gut immunity.Presynaptic GABA Receptors Mediate Temporal Contrast Enhancement in Drosophila Olfactory Sensory Neurons and Modulate Odor-Driven Behavioral Kinetics.Chemical measurements in Drosophila.Neurexin regulates nighttime sleep by modulating synaptic transmission.Comparison of quantitative metabolite imaging tools and carbon-13 techniques for fluxomics.Activity-dependent modulation of neural circuit synaptic connectivity.Neuron class-specific requirements for Fragile X Mental Retardation Protein in critical period development of calcium signaling in learning and memory circuitry.In Vivo Functional Brain Imaging Approach Based on Bioluminescent Calcium Indicator GFP-aequorin.Mushroom body efferent neurons responsible for aversive olfactory memory retrieval in Drosophila.
P2860
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P2860
In vivo calcium imaging of brain activity in Drosophila by transgenic cameleon expression.
description
2003 nî lūn-bûn
@nan
2003年の論文
@ja
2003年学术文章
@wuu
2003年学术文章
@zh
2003年学术文章
@zh-cn
2003年学术文章
@zh-hans
2003年学术文章
@zh-my
2003年学术文章
@zh-sg
2003年學術文章
@yue
2003年學術文章
@zh-hant
name
In vivo calcium imaging of bra ...... ransgenic cameleon expression.
@en
In vivo calcium imaging of bra ...... ransgenic cameleon expression.
@nl
type
label
In vivo calcium imaging of bra ...... ransgenic cameleon expression.
@en
In vivo calcium imaging of bra ...... ransgenic cameleon expression.
@nl
prefLabel
In vivo calcium imaging of bra ...... ransgenic cameleon expression.
@en
In vivo calcium imaging of bra ...... ransgenic cameleon expression.
@nl
P2860
P1476
In vivo calcium imaging of bra ...... ransgenic cameleon expression.
@en
P2093
André Fiala
Thomas Spall
P2860
P356
10.1126/STKE.2003.174.PL6
P577
2003-03-18T00:00:00Z