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1. Ex vivo Tissue Culture Protocols for Studying the Developing Neocortex

2. 3′ UTR-Dependent, miR-92-Mediated Restriction of Tis21 Expression Maintains Asymmetric Neural Stem Cell Division to Ensure Proper Neocortex Size

3. Sustained Pax6 Expression Generates Primate-like Basal Radial Glia in Developing Mouse Neocortex.

4. Human-specific ARHGAP11B increases size and folding of primate neocortex in the fetal marmoset

5. DOT1L activity affects cell lineage progression in the developing brain by controlling metabolic programs

6. Longer metaphase and fewer chromosome segregation errors in modern human than Neandertal brain development

7. Longer metaphase and fewer chromosome segregation errors in modern human than Neanderthal brain development

8. Manipulation of Single Neural Stem Cells and Neurons in Brain Slices using Robotic Microinjection

9. Ex vivo Tissue Culture Protocols for Studying the Developing Neocortex

10. Insm1 Induces Neural Progenitor Delamination in Developing Neocortex via Downregulation of the Adherens Junction Belt-Specific Protein Plekha7

11. Epigenome profiling and editing of neocortical progenitor cells during development

12. Human-specific

13. Robotic platform for microinjection into single cells in brain tissue

14. Robotic platform for microinjection into single cells in intact tissue

15. Robotic Platform for the Delivery of Gene Products Into Single Cells in Organotypic Slices of the Developing Mouse Brain

16. Human-specific gene ARHGAP11B promotes basal progenitor amplification and neocortex expansion

17. Microinjection of membrane-impermeable molecules into single neural stem cells in brain tissue

18. A new approach to manipulate the fate of single neural stem cells in tissue

19. Insulinoma-Associated 1 Has a Panneurogenic Role and Promotes the Generation and Expansion of Basal Progenitors in the Developing Mouse Neocortex

20. Non-canonical features of the Golgi apparatus in bipolar epithelial neural stem cells

21. Neural stem and progenitor cells shorten S-phase on commitment to neuron production

22. miRNAs are essential for survival and differentiation of newborn neurons but not for expansion of neural progenitors during early neurogenesis in the mouse embryonic neocortex

23. Selective Lengthening of the Cell Cycle in the Neurogenic Subpopulation of Neural Progenitor Cells during Mouse Brain Development

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