A technique for noninvasively quantifying the concentration of sodium (23Na) ions was applied to the study of ischemic stroke. 23Na-magnetic resonance imaging techniques have shown considerable potential for measuring subtle changes in ischemic tissue, although studies to date have suffered primarily from poor signal/noise ratio. In this study, accurate quantification of tissue sodium concentration (TSC) was achieved in 23Na images with voxel sizes of 1.2 μL acquired in 10 min. The evolution of TSC was investigated from 0.5 to 8 h in focal cortical and subcortical ischemic tissue following permanent middle cerebral artery occlusion in the rat (n = 5). Infarct volumes determined from TSC measurements correlated significantly with histology (...
Background: Diffusion magnetic resonance imaging (MRI) is the current-state-of-the-art technique to...
International audienceSodium (23 Na) MRI proffers the possibility of novel information for neurologi...
MRI of total sodium (Na) content may allow assessment of myocardial viability, but information on Na...
This thesis presents sodium magnetic resonance as an in vivo means for non-invasively visualizing th...
Tissue sodium concentration increases in irreversibly damaged (core) tissue following ischemic strok...
A method for quantifying the tissue sodium concentration (TSC) in the rat brain from Na-23-MR images...
Purpose—To prospectively determine whether the absolute tissue sodium concentration (TSC) increases ...
The tissue sodium concentration (TSC) can be obtained from quantitative sodium (23Na) magnetic reson...
Sodium magnetic resonance imaging (MRI) is used to investigate metabolic processes in tissues. Sodiu...
A double-tuned Na-23/H-1 resonator system was developed to record multinuclear MR image data during ...
23Na magnetic resonance imaging has been used to investigate sodium changes during and after cerebra...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
International audienceSodium imaging ( 23 Na-MRI) is of interest in neurological conditions given po...
Quantitative 23Na Magnetic Resonance Imaging (qNa-MRI) is a non-invasive technique which has conside...
Background: Diffusion magnetic resonance imaging (MRI) is the current-state-of-the-art technique to...
International audienceSodium (23 Na) MRI proffers the possibility of novel information for neurologi...
MRI of total sodium (Na) content may allow assessment of myocardial viability, but information on Na...
This thesis presents sodium magnetic resonance as an in vivo means for non-invasively visualizing th...
Tissue sodium concentration increases in irreversibly damaged (core) tissue following ischemic strok...
A method for quantifying the tissue sodium concentration (TSC) in the rat brain from Na-23-MR images...
Purpose—To prospectively determine whether the absolute tissue sodium concentration (TSC) increases ...
The tissue sodium concentration (TSC) can be obtained from quantitative sodium (23Na) magnetic reson...
Sodium magnetic resonance imaging (MRI) is used to investigate metabolic processes in tissues. Sodiu...
A double-tuned Na-23/H-1 resonator system was developed to record multinuclear MR image data during ...
23Na magnetic resonance imaging has been used to investigate sodium changes during and after cerebra...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
International audienceSodium imaging ( 23 Na-MRI) is of interest in neurological conditions given po...
Quantitative 23Na Magnetic Resonance Imaging (qNa-MRI) is a non-invasive technique which has conside...
Background: Diffusion magnetic resonance imaging (MRI) is the current-state-of-the-art technique to...
International audienceSodium (23 Na) MRI proffers the possibility of novel information for neurologi...
MRI of total sodium (Na) content may allow assessment of myocardial viability, but information on Na...