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logoResearch groups
 

The network is made up of researchers that work in groups at different Universities, Hospitals and within the CSIC (Spanish Scientific Research Council), based in different Autonomous Communities.

Catalonia

Castilla la Mancha

Castilla y León

Extremadura

Galicia

Madrid

Valencia

Principality of Asturias

 

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logo Research groups: Directory

P.I: Ángel Acebes
Molecular mechanisms in Neurodegeneration

P.I: Esther Alcorta
Neurogenetics

P.I: Juan Andrés de Carlos
Telencephalic development

P.I: Fernando de Castro

Group of Developmental Neurobiology - GNDe

P.I: Carlos Crespo Rupérez
Neurobiology Research Unit

P.I: Ester Desfilis

P.I: Alberto Ferrús
Synapses and sensory perception

P.I: Jesus Mª García Briñón

P.I: José Manuel García Verdugo

P.I: Josep de Haro Licer

P.I: Oscar Herreras

P.I: Carmen Horillo

P.I: Eduard Llobet

P.I: Laura López Mascaraque
The olfactory system and its development

P.I: Santiago Marco Colás
Signal and Information Processing in Sensing Systems

I.P: Fernando Martínez

P.I: Enrique Lanuza

P.I: Alino Martinez Marcos
Neuroplasticity and Neurodegeneracion

P.I: Loreta Medina

P.I: Adolfo Toledano

P.I: José Luís Trejo Pérez
Adult Neurogenesis

P.I: Carlos Vicario
Stem Cells, Neurogenesis and Neurodegeneration

P.I: Eduardo Weruaga y José Ramón Alonso

I.P: Jesús Lozano
Sensory Systems Research Group

 

logoRecent Publicaciones

Cádiz-Moretti B, Otero-García M, Martínez-García F, Lanuza E. (2016). Afferent projections to the different medial amygdala subdivisions: a retrograde tracing study in the mouse. Brain Struct Funct. 221:1033-65. doi:10.1007/s00429-014-0954-y.

Defterali C, Verdejo R, Peponi L, Martín ED, Martínez-Murillo R, López-Manchado MA and Vicario-Abejón C (2016). Thermally reduced graphene is a permissive material for neurons and astrocytes and de novo neurogenesis in the adult olfactory bulb in vivo. Biomaterials 82: 84-93.

De la Rosa-Prieto C, Saiz-Sanchez D, Ubeda-Bañón I, Flores-Cuadrado A, Martínez-Marcos A (2016). Newborn-cells and amyloid-β in the olfactory bulb of app/ps1 mice model of alzheimer´s disease: differential interneuron vulnerability. Frontiers in Neuroscience, doi: 10.3389/fnins.2016.00227.

García-Marqués J. and López-Mascaraque L. (2016). Clonal mapping of astrocytes in the olfactory bulb and rostral migratory stream. Cerebral Cortex, doi:10.1093/cercor/bhw071.

Mansilla A, Martín F.A, Martín D, and Ferrús A (2016). Ligand independent requirements of steroid receptors EcR and USP for cell survival. Cell Death and Diff. 23: 405-416.

García-González D., Murcia-Belmonte V., Ortega F., Díaz D., Sánchez-Vera I., Esteban P.F., Lebrón-Galán R., Escobar-Castañondo L., Martínez-Millán L., García-Verdugo J.M., Weruaga E., Berninger B., de Castro F. (2016). Anosmin-1 over-expression increases adult neurogenesis in the subventricular zone and neuroblast migration to the olfactory bulb. Brain Structure and Function 221: 239-60.

Liberia T; Blasco-Ibáñez JM; Nácher J; Varea E; Lanciego JL; Crespo C. (2015). Synaptic connectivity of the cholinergic axons in the olfactory bulb of the cynomolgus monkey. Frontiers In Neuroanatomy. doi: 10.3389/fnana.2015.00028. eCollection 2015.

Lozano J, Santos JP, Suárez JI, Cabellos M, Arroyo T and Horrillo C (2015). Automatic sensor system for the continuous analysis of the evolution of wine. American Journal on Enology and Viticulture 66 : 148-155.

Ziyatdinov, Andrey, Fonollosa, Jordi, Fernánndez, Luis, Gutierrez-Gálvez, Agustín, Marco, Santiago, Perera, Alexandre, (2015). Bioinspired early detection through gas flow modulation in chemo-sensory systems Sensors and Actuators B: Chemical 206: 538-547.

Pedraza, M., Hoerder-Suabedissen, A., Albert-Maestro, M.A., Molnar, Z. and De Carlos, J. A. 2014. Extracortical origin of some murine subplate cell populations. PNAS, 111: 8607-8612.

Pérez-Domper P, Gradari S, Trejo JL. (2013). The growth factors cascade and the dendrito-/synapto-genesis versus cell survival in adult hippocampal neurogenesis: the chicken or the egg. Ageing Res Rev. 12:777-85.

Riveron J, Boto T, Alcorta E. (2013). Transcriptional basis of the acclimation to high environmental temperature at the olfactory receptor organs of Drosophila melanogaster. BMC Genomics 14: 259.

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