Leader
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00000nz a2200037n 45 0 |
001
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WKP|Q43180702
(VIAF cluster)
(Authority/Source Record)
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WKP |
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20241221010720.0 |
008
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035
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(WKP)Q43180702
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0000-0002-1430-4633
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orcid
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035
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(OCoLC)Q43180702
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100
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0 |
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Sebastián A Romano
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ast
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es
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sl
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375
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1
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iso5218
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400
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Sebastián A Romano
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researcher
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en
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400
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Sebastián A Romano
‡c
onderzoeker
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nl
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670
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Author's A biophysical model for modulation frequency encoding in the cochlear nucleus.
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670
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Author's A microfluidic device to study neuronal and motor responses to acute chemical stimuli in zebrafish
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670
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Author's An integrated calcium imaging processing toolbox for the analysis of neuronal population dynamics
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670
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Author's Characterization of degree frequency distribution in protein interaction networks
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670
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Author's Diversity in cell motility reveals the dynamic nature of the formation of zebrafish taste sensory organs
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670
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Author's Fast functional imaging of multiple brain regions in intact zebrafish larvae using selective plane illumination microscopy
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670
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Author's Reciprocal remodeling upon binding of the prion protein to its signaling partner hop/STI1.
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670
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‡a
Author's Spontaneous neuronal network dynamics reveal circuit's functional adaptations for behavior.
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670
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Author's Sustained Rhythmic Brain Activity Underlies Visual Motion Perception in Zebrafish
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670
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Author's The first mecp2-null zebrafish model shows altered motor behaviors
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909
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(orcid) 0000000214304633
‡9
1
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919
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‡a
microfluidicdevicetostudyneuronalandmotorresponsestoacutechemicalstimuliinzebrafish
‡A
A microfluidic device to study neuronal and motor responses to acute chemical stimuli in zebrafish
‡9
1
|
919
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|
‡a
biophysicalmodelformodulationfrequencyencodinginthecochlearnucleus
‡A
A biophysical model for modulation frequency encoding in the cochlear nucleus.
‡9
1
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919
|
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|
‡a
1mecp2nullzebrafishmodelshowsalteredmotorbehaviors
‡A
The first mecp2-null zebrafish model shows altered motor behaviors
‡9
1
|
919
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|
|
‡a
sustainedrhythmicbrainactivityunderliesvisualmotionperceptioninzebrafish
‡A
Sustained Rhythmic Brain Activity Underlies Visual Motion Perception in Zebrafish
‡9
1
|
919
|
|
|
‡a
spontaneousneuronalnetworkdynamicsrevealcircuitsfunctionaladaptationsforbehavior
‡A
Spontaneous neuronal network dynamics reveal circuit's functional adaptations for behavior.
‡9
1
|
919
|
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|
‡a
reciprocalremodelinguponbindingoftheprionproteintoitssignalingpartnerhopsti1
‡A
Reciprocal remodeling upon binding of the prion protein to its signaling partner hop/STI1.
‡9
1
|
919
|
|
|
‡a
fastfunctionalimagingofmultiplebrainregionsinintactzebrafishlarvaeusingselectiveplaneilluminationmicroscopy
‡A
Fast functional imaging of multiple brain regions in intact zebrafish larvae using selective plane illumination microscopy
‡9
1
|
919
|
|
|
‡a
diversityincellmotilityrevealsthedynamicnatureoftheformationofzebrafishtastesensoryorgans
‡A
Diversity in cell motility reveals the dynamic nature of the formation of zebrafish taste sensory organs
‡9
1
|
919
|
|
|
‡a
characterizationofdegreefrequencydistributioninproteininteractionnetworks
‡A
Characterization of degree frequency distribution in protein interaction networks
‡9
1
|
919
|
|
|
‡a
integratedcalciumimagingprocessingtoolboxfortheanalysisofneuronalpopulationdynamics
‡A
An integrated calcium imaging processing toolbox for the analysis of neuronal population dynamics
‡9
1
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946
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‡a
b
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1
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996
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996
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SUDOC|188452192
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RERO|A017002767
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LC|no2012006208
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