MEMORY CAPACITY

Investigating the neural correlates of working memory capacity using functional magnetic resonance imaging and transcranial magnetic stimulation

 Coordinatore UNIVERSITY COLLEGE LONDON 

 Organization address address: GOWER STREET
city: LONDON
postcode: WC1E 6BT

contact info
Titolo: Ms.
Nome: Greta
Cognome: Borg-Carbott
Email: send email
Telefono: 442077000000
Fax: 442077000000

 Nazionalità Coordinatore United Kingdom [UK]
 Totale costo 181˙142 €
 EC contributo 181˙142 €
 Programma FP7-PEOPLE
Specific programme "People" implementing the Seventh Framework Programme of the European Community for research, technological development and demonstration activities (2007 to 2013)
 Code Call FP7-PEOPLE-2007-2-1-IEF
 Funding Scheme MC-IEF
 Anno di inizio 2008
 Periodo (anno-mese-giorno) 2008-09-01   -   2010-08-31

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    UNIVERSITY COLLEGE LONDON

 Organization address address: GOWER STREET
city: LONDON
postcode: WC1E 6BT

contact info
Titolo: Ms.
Nome: Greta
Cognome: Borg-Carbott
Email: send email
Telefono: 442077000000
Fax: 442077000000

UK (LONDON) coordinator 0.00

Mappa


 Word cloud

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

storage    distant    occurs    stored    prefrontal    magnetic    encoding    capacity    signals    differences    pfc    amount    regions    retention    causal    posterior    fmri    source    neural    wm    cortex    connected    brain    related    individuals    tms    evidence    memory    human   

 Obiettivo del progetto (Objective)

'The proposed research focuses on the neural substrates of human working memory (WM) i.e., the processes enabling the brief retention and manipulation of information when it is no longer present in the environment towards attaining behavioural goals. There is evidence that the prefrontal cortex (PFC) may be involved in controlling what is to be retained in WM, and that storage occurs in connected but distant brain regions i.e., in posterior cortex. Thus, the PFC may be the source of “top down” influences in WM. Furthermore, differences across individuals in the amount of information they can store (i.e., memory capacity) may depend, in part, on what is being stored, rather than the amount. Such individual capacity differences are reflected by differences in neural activity in storage-related brain regions. The proposed series of experiments aims to exploit these capacity-related differences in neural activity in order to provide causal evidence that (1) the retention of object-based information occurs in posterior cortex; (2) the PFC is functionally connected to these posterior storage regions and is the source of encoding signals directing what is to be stored; (3) differences in memory capacity across individuals is due, at least in part, to whether not relevant or irrelevant information is stored; (4) modulation of prefrontal encoding signals will result in changes in the both capacity-related neural activity in posterior storage regions, and in the psychological measures of individuals’ memory capacity. These aims will be explored using the cutting-edge combinations of both functional magnetic resonance (fMRI)-guided transcranial magnetic stimulation (TMS) and concurrent TMS-fMRI. The ability of fMRI to visual whole-brain activity during a task in combination with the causal information provided by TMS will allow for the first direct evidence in human WM of both the existence of and the nature of effective connections between distant regions.'

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