Dynamic labelling of neural connections in multiple colours by trans-synaptic fluorescence complementation.
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Understanding Synaptogenesis and Functional Connectome in C. elegans by Imaging TechnologyAdvanced Fluorescence Protein-Based Synapse-DetectorsThe laminar organization of the Drosophila ellipsoid body is semaphorin-dependent and prevents the formation of ectopic synaptic connectionsBirth order dependent growth cone segregation determines synaptic layer identity in the Drosophila visual systemVisualizing K48 Ubiquitination during Presynaptic Formation By Ubiquitination-Induced Fluorescence Complementation (UiFC).Reciprocal synapses between mushroom body and dopamine neurons form a positive feedback loop required for learning.Unique patterns of organization and migration of FGF-expressing cells during Drosophila morphogenesis.Methods to investigate the structure and connectivity of the nervous system.A Drosophila LexA Enhancer-Trap Resource for Developmental Biology and Neuroendocrine Research.Improved split fluorescent proteins for endogenous protein labelingFunctional mapping of brain synapses by the enriching activity-marker SynaptoZip.Identified Serotonergic Modulatory Neurons Have Heterogeneous Synaptic Connectivity within the Olfactory System of Drosophila.Transsynaptic Mapping of Second-Order Taste Neurons in Flies by trans-Tango.Early Integration of Temperature and Humidity Stimuli in the Drosophila Brain.Drosophila Sidekick is required in developing photoreceptors to enable visual motion detection.Internal State Dependent Odor Processing and Perception-The Role of Neuromodulation in the Fly Olfactory System.Untangling the wiring of the Drosophila visual system: developmental principles and molecular strategies.Serotonergic Modulation Enables Pathway-Specific Plasticity in a Developing Sensory Circuit in Drosophila.Examining Monosynaptic Connections in Drosophila Using Tetrodotoxin Resistant Sodium Channels.Functional Imaging and Optogenetics in Drosophila.Neural Control of Startle-Induced Locomotion by the Mushroom Bodies and Associated Neurons in Drosophila.as a Model for Assessing the Function of RNA-Binding Proteins during Neurogenesis and Neurological Disease
P2860
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P2860
Dynamic labelling of neural connections in multiple colours by trans-synaptic fluorescence complementation.
description
2015 nî lūn-bûn
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2015年の論文
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年学术文章
@zh-sg
2015年學術文章
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name
Dynamic labelling of neural co ...... fluorescence complementation.
@ast
Dynamic labelling of neural co ...... fluorescence complementation.
@en
type
label
Dynamic labelling of neural co ...... fluorescence complementation.
@ast
Dynamic labelling of neural co ...... fluorescence complementation.
@en
prefLabel
Dynamic labelling of neural co ...... fluorescence complementation.
@ast
Dynamic labelling of neural co ...... fluorescence complementation.
@en
P2860
P50
P356
P1476
Dynamic labelling of neural co ...... c fluorescence complementation
@en
P2093
Michael H Alpert
Zeynep Turan
P2860
P2888
P356
10.1038/NCOMMS10024
P407
P577
2015-12-04T00:00:00Z