l'istituto

L’eredità di Enrico Fermi. Le sfide del futuro

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STIAMO CERCANDO...
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terza missione

Il CREF nasce con la duplice anima di Centro di Ricerca e di Museo Storico, con l’intento di conservare e diffondere la memoria di Enrico Fermi, oltre che favorire un’ampia diffusione e comunicazione della cultura scientifica.

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la ricerca

Il CREF promuove linee di ricerca originali e di grande impatto, improntate ai metodi della fisica, ma con un forte carattere interdisciplinare e in relazione con i principali problemi della moderna società della conoscenza.

NEWS ISMRBF: International School on Magnetic Resonance and Brain Function in Erice

The 14th edition of the International School on Magnetic Resonance and Brain Function (ISMRBF) will be held from October 24 to 29, 2025, in Erice (Sicily, Italy) at the Ettore Majorana Centre for Scientific Culture. The workshop will focus on MRI techniques and methods for the integrated study of the brain, its physiology, and its functional dynamics. Registration […]

RECENTRE – REal-time motion CorrEctioN in magneTic REsonance

REal-time motion CorrEctioN in magneTic REsonance  Coordination: Sapienza Università di Roma CREF  referrer: Federico Giove Partner: CNR, INFN, Università Federico II Project Code: P202294JHK The RECENTRE project proposes a novel high-speed, real-time prospective motion correction technique for MR spectroscopy of the human brain. The technique is based on modern Deep Learning methods, which provide a […]

FISASMEM – Aging Physiology : developing quantitative MRI Methods

FISASMEM – Aging Physiology : developing quantitative MRI Methods 2021-2023 Regione Lazio POR-FESR A0375-2020-36648 Characterizing aging is important for social wellbeing and for understanding the devastating effects of some age-related neurological pathologies. Functional Magnetic Resonance Imaging (fMRI) is an investigative tool capable of capturing the deterioration of human brain network functionality associated with aging and […]

Neuroscience and quantitative neuroimaging

the research The project studies the dynamics of brain function through quantitative experimental approaches based on magnetic resonance imaging (MRI), combined with computational models. Experimental activity focuses on investigating the association between cortical information processing, the energy consumption supporting it, and the microstructural substrate enabling its transmission. Project activities extend to functional dynamics induced by […]