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Neonatal subventricular zone electroporation
David M. Feliciano
*
, Carlos A. Lafourcade
, Angélique Bordey
*
Corresponding author for this work
Centro de Investigación e Innovación Biomédica
Research output
:
Contribution to journal
›
Article
›
peer-review
25
Scopus citations
Overview
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Keyphrases
Astrocyte Cells
20%
Cortical Development
20%
Differentiation of Self
20%
Effective Alternative
20%
Electroporation
100%
Embryonic Neural Stem Cells
20%
Ependymal Cells
20%
Forebrain
20%
Genetic Engineering
40%
Invertebrates
20%
Lateral Ventricle
20%
Mammalian System
20%
Molecular Pathways
20%
Multiple Cell Types
20%
Nervous System Diseases
20%
Neural Stem Cells
100%
Neuron Cells
20%
Rapid Techniques
20%
Rodents
20%
Self-commitment
20%
Simple Technique
20%
Stem Cell Lines
20%
Stem Cell Self-renewal
20%
Subventricular Zone
100%
Whole Animal
20%
Neuroscience
Astrocyte
16%
Cell Line
16%
Central Nervous System
16%
Electroporation
100%
Ependymal Cell
16%
Genetic Engineering
33%
In Vitro
16%
Lateral Ventricle
16%
Nervous System Disorder
16%
Neural Stem Cell
100%
Stem Cell Self-Renewal
16%
Subventricular Zone
100%