CIRCUIT

Neural circuits for space representation in the mammalian cortex

 Coordinatore NORGES TEKNISK-NATURVITENSKAPELIGEUNIVERSITET NTNU 

Spiacenti, non ci sono informazioni su questo coordinatore. Contattare Fabio per maggiori infomrazioni, grazie.

 Nazionalità Coordinatore Norway [NO]
 Totale costo 2˙499˙112 €
 EC contributo 2˙499˙112 €
 Programma FP7-IDEAS-ERC
Specific programme: "Ideas" implementing the Seventh Framework Programme of the European Community for research, technological development and demonstration activities (2007 to 2013)
 Code Call ERC-2008-AdG
 Funding Scheme ERC-AG
 Anno di inizio 2009
 Periodo (anno-mese-giorno) 2009-01-01   -   2013-12-31

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    NORGES TEKNISK-NATURVITENSKAPELIGEUNIVERSITET NTNU

 Organization address address: HOGSKOLERINGEN 1
city: TRONDHEIM
postcode: 7491

contact info
Titolo: Prof.
Nome: Edvard Ingjald
Cognome: Moser
Email: send email
Telefono: 4773598278
Fax: 4773598294

NO (TRONDHEIM) hostInstitution 2˙499˙112.00
2    NORGES TEKNISK-NATURVITENSKAPELIGEUNIVERSITET NTNU

 Organization address address: HOGSKOLERINGEN 1
city: TRONDHEIM
postcode: 7491

contact info
Titolo: Prof.
Nome: Stig
Cognome: Slørdahl
Email: send email
Telefono: 4773598618
Fax: 4773597844

NO (TRONDHEIM) hostInstitution 2˙499˙112.00

Mappa


 Word cloud

Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.

questions    thought    grid    individual    entorhinal    mammalian    cell    cognitive    phenomena    circuits    function    functional    circuit    brain    neural    locations    cells   

 Obiettivo del progetto (Objective)

'Neuroscience is one of the fastest-developing areas of science, but it is fair to say that we are still far from understanding how the brain produces subjective experience. For example, simple questions about the origin of thought, imagination, social interaction, or feelings lack even rudimentary answers. We have learnt much about the workings of individual cells and synapses, but psychological phenomena cannot be understood only at this level. These phenomena all emerge from interactions between large numbers of diverse cells in intermingled neural circuits. A major obstacle has been the absence of concepts and tools for investigating neural computation at the circuit level. The aim of this proposal is to combine new transgenic methods for cell type-specific intervention with large-scale multisite single-cell recording to determine how a basic cognitive function self-localization is generated in a functionally well-described mammalian neural circuit. We shall use our recent discovery of entorhinal grid cells as an access ramp. Grid cells fire only when the animal moves through certain locations. For each cell, these locations define a periodic triangular array spanning the whole environment. Grid cells co-exist with other entorhinal cell types encoding head direction, geometric borders, or conjunctions of features. This network is thought to form an essential part of the brain s coordinate system for metric navigation but the detailed wiring, the mechanism of grid formation, and the function of each morphological and functional cell type all remain to be determined. We shall address these open questions by measuring how dynamic spatial representation is affected by transgene-induced activation or inactivation of the individual components of the circuit. The endeavour will pioneer the functional analysis of neural circuits and may, perhaps for the first time, provide us with mechanistic insight into a non-sensory cognitive function in the mammalian cortex.'

Altri progetti dello stesso programma (FP7-IDEAS-ERC)

WATERWORLDS (2009)

Waterworlds: Natural environmental disasters and social resilience in anthropological perspective

Read More  

CULTRWORLD (2010)

The evolution of cultural norms in real world settings

Read More  

DESI_JEDI-IMAGING (2008)

Development of mass spectrometric techniques for 3D imaging and in-vivo analysis of biological tissues

Read More