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2. Temporal and sequential transcriptional dynamics define lineage shifts in corticogenesis

3. Astrocyte-neuron crosstalk through Hedgehog signaling mediates cortical synapse development

4. Transcriptional profiling of sequentially generated septal neuron fates

5. Multimodal classification of neurons in the lateral septum

6. Developmental origin and local signals cooperate to determine septal astrocyte identity

7. Wide Dispersion and Diversity of Clonally Related Inhibitory Interneurons.

14. Astrocyte-Neuron Crosstalk Through Hedgehog Signaling Mediates Cortical Circuit Assembly

16. Astrocyte-neuron crosstalk through Hedgehog signaling mediates cortical circuit assembly

17. Cortical ChAT+ neurons co-transmit acetylcholine and GABA in a target- and brain-region-specific manner

18. Author response: Cortical ChAT+ neurons co-transmit acetylcholine and GABA in a target- and brain-region-specific manner

19. Transcriptional regulation of MGE progenitor proliferation by PRDM16 controls cortical GABAergic interneuron production

20. The Eya1 Phosphatase Mediates Shh-Driven Symmetric Cell Division of Cerebellar Granule Cell Precursors

21. Transcriptional regulation of MGE progenitor proliferation by PRDM16 controls cortical GABAergic interneuron production

26. Transcriptional regulation of MGE progenitor proliferation by PRDM16 controls cortical GABAergic interneuron production.

31. Conservation, alteration, and redistribution of mammalian striatal interneurons.

32. PRDM16 co-operates with LHX2 to shape the human brain.

33. Developmental origin and local signals cooperate to determine septal astrocyte identity.

34. A developmentally defined population of neurons in the lateral septum controls responses to aversive stimuli.

35. Cortical ChAT + neurons co-transmit acetylcholine and GABA in a target- and brain-region-specific manner.

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