Alessandra Pierani

Affiliations: 
Institut Jacques Monod, Paris, Île-de-France, France 
Website:
http://www.ijm.fr/en/ijm/research/research-groups/cortex-cerebral/
Google:
"Alessandra Pierani"
Mean distance: 14.09 (cluster 11)
 
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Publications

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Riva M, Genescu I, Habermacher C, et al. (2019) Activity-dependent death of transient Cajal-Retzius neurons is required for functional cortical wiring. Elife. 8
Arai Y, Cwetsch AW, Coppola E, et al. (2019) Evolutionary Gain of Dbx1 Expression Drives Subplate Identity in the Cerebral Cortex. Cell Reports. 29: 645-658.e5
Orduz D, Benamer N, Ortolani D, et al. (2019) Developmental cell death regulates lineage-related interneuron-oligodendroglia functional clusters and oligodendrocyte homeostasis. Nature Communications. 10: 4249
Causeret F, Coppola E, Pierani A. (2018) Cortical developmental death: selected to survive or fated to die. Current Opinion in Neurobiology. 53: 35-42
Gard C, Gonzalez-Curto G, Frarma YE, et al. (2017) Pax3- and Pax7-mediated Dbx1 regulation orchestrates the patterning of intermediate spinal interneurons. Developmental Biology
Ledonne F, Orduz D, Mercier J, et al. (2016) Targeted Inactivation of Bax Reveals a Subtype-Specific Mechanism of Cajal-Retzius Neuron Death in the Postnatal Cerebral Cortex. Cell Reports. 17: 3133-3141
Barber M, Pierani A. (2015) Tangential migration of glutamatergic neurons and cortical patterning during development: Lessons from Cajal-Retzius cells. Developmental Neurobiology
Coppola E, Ledonné F, Pierani A. (2015) Subtype specific persistence of Cajal-Retzius cells in the postnatal mouse brain. International Journal of Developmental Neuroscience : the Official Journal of the International Society For Developmental Neuroscience. 47: 23-4
Thélie A, Desiderio S, Hanotel J, et al. (2015) Prdm12 specifies V1 interneurons through cross-repressive interactions with Dbx1 and Nkx6 genes in Xenopus. Development (Cambridge, England). 142: 3416-28
Barber M, Arai Y, Morishita Y, et al. (2015) Migration Speed of Cajal-Retzius Cells Modulated by Vesicular Trafficking Controls the Size of Higher-Order Cortical Areas. Current Biology : Cb. 25: 2466-78
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