E. Taverna, M. Götz, and W. B. Huttner, The cell biology of neurogenesis: toward an understanding of the development and evolution of the neocortex, Annu. Rev. Cell Dev. Biol, vol.30, pp.465-502, 2014.

L. C. Greig, M. B. Woodworth, M. J. Galazo, H. Padmanabhan, and J. D. Macklis, Molecular logic of neocortical projection neuron specification, development and diversity, Nat. Rev. Neurosci, vol.14, pp.755-769, 2013.

A. V. Molofsky, Astrocyte-encoded positional cues maintain sensorimotor circuit integrity, Nature, vol.509, pp.189-194, 2014.

R. Martín, R. Bajo-grañeras, R. Moratalla, G. Perea, and A. Araque, Circuitspecific signaling in astrocyte-neuron networks in basal ganglia pathways, Science, vol.349, pp.730-734, 2015.

H. Chai, Neural circuit-specialized astrocytes: transcriptomic, proteomic, morphological, and functional evidence, Neuron, vol.95, pp.531-549, 2017.

B. A. Barres, The mystery and magic of glia: a perspective on their roles in health and disease, Neuron, vol.60, pp.430-440, 2008.

I. Farhy-tselnicker and N. J. Allen, Astrocytes, neurons, synapses: a tripartite view on cortical circuit development, Neural Dev, vol.13, p.7, 2018.

N. J. Allen and C. Eroglu, Cell biology of astrocyte-synapse interactions, Neuron, vol.96, pp.697-708, 2017.

A. P. Bosworth and N. J. Allen, The diverse actions of astrocytes during synaptic development, Curr. Opin. Neurobiol, vol.47, pp.38-43, 2017.

E. A. Bushong, M. E. Martone, Y. Z. Jones, and M. H. Ellisman, Protoplasmic astrocytes in CA1 stratum radiatum occupy separate anatomical domains, J. Neurosci, vol.22, pp.183-192, 2002.

K. Ogata and T. Kosaka, Structural and quantitative analysis of astrocytes in the mouse hippocampus, Neuroscience, vol.113, pp.221-233, 2002.

O. A. Bayraktar, L. C. Fuentealba, A. Alvarez-buylla, and D. H. Rowitch, Astrocyte development and heterogeneity, Cold Spring Harb. Perspect. Biol, vol.7, p.20362, 2014.

C. Schitine, L. Nogaroli, M. R. Costa, and C. Hedin-pereira, Astrocyte heterogeneity in the brain: from development to disease, Front. Cell. Neurosci, vol.9, p.76, 2015.

Y. Zhang, Purification and characterization of progenitor and mature human astrocytes reveals transcriptional and functional differences with mouse, Neuron, vol.89, pp.37-53, 2016.

D. Lanjakornsiripan, Layer-specific morphological and molecular differences in neocortical astrocytes and their dependence on neuronal layers, Nat. Commun, vol.9, p.1623, 2018.

L. Ben-haim and D. H. Rowitch, Functional diversity of astrocytes in neural circuit regulation, Nat. Rev. Neurosci, vol.18, pp.31-41, 2017.

A. Zeisel, Molecular architecture of the mouse nervous system, Cell, vol.174, pp.999-1014, 2018.

J. Lin and C. , Identification of diverse astrocyte populations and their malignant analogs, Nat. Neurosci, vol.20, pp.396-405, 2017.

Y. Lee, M. Su, A. Messing, and M. Brenner, Astrocyte heterogeneity revealed by expression of a GFAP-LacZ transgene, Glia, vol.53, pp.677-687, 2006.

H. Yoon, G. Walters, A. R. Paulsen, and I. A. Scarisbrick, Astrocyte heterogeneity across the brain and spinal cord occurs developmentally, in adulthood and in response to demyelination, PloS One, vol.12, p.180697, 2017.

X. Liu, The superficial glia limitans of mouse and monkey brain and spinal cord, Anat. Rec, vol.296, pp.995-1007, 2013.

J. García-marqués and L. López-mascaraque, Clonal identity determines astrocyte cortical heterogeneity, Cereb. Cortex, vol.23, pp.1463-1472, 2013.

L. Abdeladim, Multicolor multiscale brain imaging with chromatic multiphoton serial microscopy, Nat. Commun, vol.10, p.1662, 2019.
URL : https://hal.archives-ouvertes.fr/hal-02114066

P. Gao, Deterministic progenitor behavior and unitary production of neurons in the neocortex, Cell, vol.159, pp.775-788, 2014.

T. Voigt, Development of glial cells in the cerebral wall of ferrets: direct tracing of their transformation from radial glia into astrocytes, J. Comp. Neurol, vol.289, pp.74-88, 1989.

S. Magavi, D. Friedmann, G. Banks, A. Stolfi, and C. Lois, Coincident generation of pyramidal neurons and protoplasmic astrocytes in neocortical columns, J. Neurosci, vol.32, pp.4762-4772, 2012.

H. Tabata, Diverse subtypes of astrocytes and their development during corticogenesis, Front. Neurosci, vol.9, p.114, 2015.

P. Gressens, C. Richelme, H. J. Kadhim, J. F. Gadisseux, and P. Evrard, The germinative zone produces the most cortical astrocytes after neuronal migration in the developing mammalian brain, Biol. Neonate, vol.61, pp.4-24, 1992.

S. W. Levison and J. E. Goldman, Both oligodendrocytes and astrocytes develop from progenitors in the subventricular zone of postnatal rat forebrain, Neuron, vol.10, pp.201-212, 1993.

K. A. Burns, B. Murphy, S. C. Danzer, and C. Kuan, Developmental and post-injury cortical gliogenesis: a genetic fate-mapping study with Nestin-CreER mice, Glia, vol.57, pp.1115-1129, 2009.

W. Ge, A. Miyawaki, F. H. Gage, Y. N. Jan, and L. Y. Jan, Local generation of glia is a major astrocyte source in postnatal cortex, Nature, vol.484, pp.376-380, 2012.

H. Tsai, Regional astrocyte allocation regulates CNS synaptogenesis and repair, Science, vol.337, pp.358-362, 2012.

J. Enriquez, Differing strategies despite shared lineages of motor neurons and glia to achieve robust development of an adult neuropil in Drosophila, Neuron, vol.97, pp.538-554, 2018.

K. Loulier, Multiplex cell and lineage tracking with combinatorial labels, Neuron, vol.81, pp.505-520, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01086032

S. S. Tan, Cell dispersion patterns in different cortical regions studied with an X-inactivated transgenic marker, Development, vol.121, pp.1029-1039, 1995.

Y. Lee, A. Messing, M. Su, and M. Brenner, GFAP promoter elements required for region-specific and astrocyte-specific expression, Glia, vol.56, pp.481-493, 2008.

E. A. Bushong, M. E. Martone, and M. H. Ellisman, Maturation of astrocyte morphology and the establishment of astrocyte domains during postnatal hippocampal development, Int. J. Dev. Neurosci, vol.22, pp.73-86, 2004.

J. A. Stogsdill, Astrocytic neuroligins control astrocyte morphogenesis and synaptogenesis, Nature, vol.551, pp.192-197, 2017.

N. Takata and H. Hirase, Cortical Layer 1 and Layer 2/3 astrocytes exhibit distinct calcium dynamics in vivo, PLoS ONE, vol.3, p.2525, 2008.

N. A. Oberheim, S. A. Goldman, and M. Nedergaard, Heterogeneity of astrocytic form and function, vol.814, pp.23-45, 2012.

C. A. Marshall, B. G. Novitch, and J. E. Goldman, olig2 directs astrocyte and oligodendrocyte formation in postnatal subventricular zone cells, J. Neurosci, vol.25, pp.7289-7298, 2005.

J. Cai, A crucial role for Olig2 in white matter astrocyte development, Development, vol.134, pp.1887-1899, 2007.

K. Ono, Regional-and temporal-dependent changes in the differentiation of Olig2 progenitors in the forebrain, and the impact on astrocyte development in the dorsal pallium, Dev. Biol, vol.320, pp.456-468, 2008.

K. Tatsumi, Olig2-lineage astrocytes: a distinct subtype of astrocytes that differs from GFAP astrocytes, Front. Neuroanat, vol.12, 2018.

R. Beattie, Mosaic analysis with double markers reveals distinct sequential functions of Lgl1 in neural stem cells, Neuron, vol.94, pp.517-533, 2017.

A. V. Molofsky and B. Deneen, Astrocyte development: a guide for the perplexed: mechanisms of astrocyte development, Glia, vol.63, pp.1320-1329, 2015.

L. C. Foo, Development of a method for the purification and culture of rodent astrocytes, Neuron, vol.71, pp.799-811, 2011.

V. Cerrato, Multiple origins and modularity in the spatiotemporal emergence of cerebellar astrocyte heterogeneity, PLoS Biol, vol.16, p.2005513, 2018.

H. Niwa, K. Yamamura, and J. Miyazaki, Efficient selection for high-expression transfectants with a novel eukaryotic vector, Gene, vol.108, pp.193-199, 1991.

D. A. Zacharias, J. D. Violin, A. C. Newton, and R. Y. Tsien, Partitioning of lipid-modified monomeric GFPs into membrane microdomains of live cells, Science, vol.296, pp.913-916, 2002.

A. Yoshida, Simultaneous expression of different transgenes in neurons and glia by combining in utero electroporation with the Tol2 transposonmediated gene transfer system, Genes Cells, vol.15, pp.501-512, 2010.

R. E. Campbell, A monomeric red fluorescent protein, Proc. Natl Acad. Sci. USA, vol.99, pp.7877-7882, 2002.

P. Mahou, Multicolor two-photon tissue imaging by wavelength mixing, Nat. Methods, vol.9, pp.815-818, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00324345

S. Preibisch, S. Saalfeld, and P. Tomancak, Globally optimal stitching of tiled 3D microscopic image acquisitions, Bioinformatics, vol.25, pp.1463-1465, 2009.

J. Schindelin, Fiji: an open-source platform for biological-image analysis, Nat. Methods, vol.9, pp.676-682, 2012.

A. Cardona, TrakEM2 software for neural circuit reconstruction, PLoS ONE, vol.7, p.38011, 2012.

H. Peng, A. Bria, Z. Zhou, G. Iannello, and F. Long, Extensible visualization and analysis for multidimensional images using Vaa3D, Nat. Protoc, vol.9, pp.193-208, 2014.