24 results on '"Borrell, Víctor"'
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2. Structural basis of envelope and phase intrinsic coupling modes in the cerebral cortex
3. Developmental mechanisms of gyrification
4. miR-137 and miR-122, two outer subventricular zone non-coding RNAs, regulate basal progenitor expansion and neuronal differentiation
5. A Retino-retinal Projection Guided by Unc5c Emerged in Species with Retinal Waves
6. Evolution of Cortical Neurogenesis in Amniotes Controlled by Robo Signaling Levels
7. Genetic maps and patterns of cerebral cortex folding
8. Regulation of Cerebral Cortex Folding by Controlling Neuronal Migration via FLRT Adhesion Molecules
9. Human-specific genomic signatures of neocortical expansion
10. Mechanisms of brain evolution: Regulation of neural progenitor cell diversity and cell cycle length
11. Role of radial glial cells in cerebral cortex folding
12. Trnp1 Regulates Expansion and Folding of the Mammalian Cerebral Cortex by Control of Radial Glial Fate
13. Contact Repulsion Controls the Dispersion and Final Distribution of Cajal-Retzius Cells
14. Slit/Robo Signaling Modulates the Proliferation of Central Nervous System Progenitors
15. Maldevelopment of the cerebral cortex in the surgically induced model of myelomeningocele: implications for fetal neurosurgery
16. In vivo gene delivery to the postnatal ferret cerebral cortex by DNA electroporation
17. Chapter One - The regulation of cortical neurogenesis
18. ELECTROPHYSIOLOGICAL AND NETWORK PROPERTIES OF SPATIAL-RELATED NEURONS IN THE SUBICULUM OF MICE
19. Reelin and mDab1 regulate the development of hippocampal connections
20. Targeted gene delivery to telencephalic inhibitory neurons by directional in utero electroporation
21. A protocol for in ovo electroporation of chicken and snake embryos to study forebrain development
22. Protomapped by the pros: Proneural factors pattern cortex folding
23. Development of Commissural Connections in the Hippocampus of Reeler Mice: Evidence of an Inhibitory Influence of Cajal–Retzius Cells
24. Transcriptional Profiling of Hypoxic Neural Stem Cells Identifies Calcineurin-NFATc4 Signaling as a Major Regulator of Neural Stem Cell Biology
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