Juan José Ruiz RicoGregorio Cámara VillarFrancisco Balaguer CallejónMaría Luisa Balaguer CallejónManuel Bonachela MesasJuan B. Cano BuenoJerónimo Garvín OjedaMarcelo ContrerasJuan Fernando López AguilarRamón Orza LinaresNicolás Pérez SolaÁngel RodríguezGerardo José Ruiz-Rico RuizJavier Terrón MonteroM. Mercedes Vera Padial
Functional magnetic resonance imaging (fMRI) is currently the primary method for non-invasive functional localization in the brain. With the emergence of MR systems with field strengths of 4 Tesla and above, neuronal activation may be studied with unprecedented accuracy. In this article we present different approaches to use the improved sensitivity and specificity for expanding current fMRT resolution limits in space and time based on several 7 Tesla studies. In addition to the challenges that arise with ultra-high magnetic fields possible solutions will be discussed.
Miguel Ángel Sevilla DuroMiguel Ángel Sevilla Duro