Optical dissection of neural circuits responsible for Drosophila larval locomotion with halorhodopsin
about
High-throughput analysis of stimulus-evoked behaviors in Drosophila larva reveals multiple modality-specific escape strategies.FIM, a novel FTIR-based imaging method for high throughput locomotion analysisDrosophila larval to pupal switch under nutrient stress requires IP3R/Ca(2+) signalling in glutamatergic interneuronsOptogenetic control of selective neural activity in multiple freely moving Drosophila adultsAutonomous circuitry for substrate exploration in freely moving Drosophila larvae.Imaging fictive locomotor patterns in larval DrosophilaThe genetic analysis of functional connectomics in DrosophilaOptogenetic perturbation of neural activity with laser illumination in semi-intact drosophila larvae in motion.Three-wavelength light control of freely moving Drosophila Melanogaster for less perturbation and efficient social-behavioral studiesPrinciples of designing interpretable optogenetic behavior experiments.Activity-dependent FMRP requirements in development of the neural circuitry of learning and memory.A Chimera Na+-Pump Rhodopsin as an Effective Optogenetic Silencer.Transient and specific inactivation of Drosophila neurons in vivo using a native ligand-gated ion channel.Reward from bugs to bipeds: a comparative approach to understanding how reward circuits function.Impaired activity-dependent neural circuit assembly and refinement in autism spectrum disorder genetic models.Development of larval motor circuits in Drosophila.Optogenetic manipulation of neural and non-neural functions.Neurophysiology of Drosophila models of Parkinson's disease.Restoration of motor defects caused by loss of Drosophila TDP-43 by expression of the voltage-gated calcium channel, Cacophony, in central neurons.Optogenetics for suppression of cardiac electrical activity in human and rat cardiomyocyte cultures.Dcf1 Improves Behavior Deficit in Drosophila and Mice Caused by Optogenetic Suppression.Exploring the Interaction of Drosophila TDP-43 and the Type II Voltage-Gated Calcium Channel, Cacophony, in Regulating Motor Function and Behavior.Novel genetic approaches to behavior in Drosophila.Optogenetic inhibition of behavior with anion channelrhodopsins.Neural circuits driving larval locomotion in Drosophila.Functional Imaging and Optogenetics in Drosophila.Integrative neuromechanics of crawling in D. melanogaster larvae.Hyperpolarization by activation of halorhodopsin results in enhanced synaptic transmission: Neuromuscular junction and CNS circuit.
P2860
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P2860
Optical dissection of neural circuits responsible for Drosophila larval locomotion with halorhodopsin
description
2011 nî lūn-bûn
@nan
2011 թուականին հրատարակուած գիտական յօդուած
@hyw
2011 թվականին հրատարակված գիտական հոդված
@hy
2011年の論文
@ja
2011年論文
@yue
2011年論文
@zh-hant
2011年論文
@zh-hk
2011年論文
@zh-mo
2011年論文
@zh-tw
2011年论文
@wuu
name
Optical dissection of neural c ...... locomotion with halorhodopsin
@ast
Optical dissection of neural c ...... locomotion with halorhodopsin
@en
Optical dissection of neural c ...... locomotion with halorhodopsin
@nl
type
label
Optical dissection of neural c ...... locomotion with halorhodopsin
@ast
Optical dissection of neural c ...... locomotion with halorhodopsin
@en
Optical dissection of neural c ...... locomotion with halorhodopsin
@nl
prefLabel
Optical dissection of neural c ...... locomotion with halorhodopsin
@ast
Optical dissection of neural c ...... locomotion with halorhodopsin
@en
Optical dissection of neural c ...... locomotion with halorhodopsin
@nl
P2093
P2860
P3181
P1433
P1476
Optical dissection of neural c ...... locomotion with halorhodopsin
@en
P2093
Akinao Nose
Etsuko Takasu
Hiroshi Kohsaka
Kengo Inada
Teruyuki Matsunaga
P2860
P304
P3181
P356
10.1371/JOURNAL.PONE.0029019
P407
P577
2011-01-01T00:00:00Z