Oihartzun denbora eta eremu magnetiko estatikoaren araberako BOLD erantzunaren neurketa bereizmen handiko irudi bidezko erresonantzia magnetikoa erabiliz: In-vivo azterketa bat
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7T-ko eremu magnetiko estatikoa duten erresonantzia magnetikorako eskanerrak erreferentziazkoeskanerrak bilakatu dira bereizmen handiko Odolaren Oxigenazio Mailaren araberako irudi bidezkoerresonantzia magnetiko funtzionala (siglak ingelesez: BOLD fMRI) neurtzeko. Aktibazio seinalealortzeko, datuok prozesatzeko erarik ohikoena garun-azalaren sakonera berean dauden voxel-ak (pixel-aren baliokidea 3 dimentsiotako espazioan) intereseko eremu batean zehar integratzea da, honela voxeltxikiek berez dakarten seinale eta zarataren arteko ratio kaxkarra hobetuz. Prozesatzeko era honek,baina, berez ratio seinale eta zarataren arteko ratio txarragoa duten eremu magnetiko baxuagoetanbehar adinako sentsibilitatea lor daitekeen galdetzera garamatza. Lan honetan, 1.5T, 3T eta 7T –nneurturiko profilak erakusten ditugu bereizmen handiko BOLD fMRI-a eremu magnetiko txikiagoetanposible ote den aztertzeko.
7T has become the gold standard for measuring high-resolution blood oxygenation dependent func-tional magnetic resonance images (BOLD fMRI), including layer specific studies. Most of these dataanalyses are performed by integrating the signal from voxels at a given cortical depth over an ex-tended patch of cortex. Such a framework compensates for the poorer SNR often associated with highresolution and opens the door for using lower field strengths in layer specific fMRI. In this work acti-vation profiles obtained at 1.5T, 3T and 7T are compared to study the feasibility of layer specific fMRIat lower fields.
7T has become the gold standard for measuring high-resolution blood oxygenation dependent func-tional magnetic resonance images (BOLD fMRI), including layer specific studies. Most of these dataanalyses are performed by integrating the signal from voxels at a given cortical depth over an ex-tended patch of cortex. Such a framework compensates for the poorer SNR often associated with highresolution and opens the door for using lower field strengths in layer specific fMRI. In this work acti-vation profiles obtained at 1.5T, 3T and 7T are compared to study the feasibility of layer specific fMRIat lower fields.
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Geruza mailako BOLD fMRI, eremu anitzen arteko konparaketa, fMRI oihartzunanitzekin, Layer specific BOLD fMRI, multifield comparison, multiecho fMRI184IkerGazte, 20