International audienceOBJECTIVE: To investigate whether brain total sodium accumulation assessed by (23)Na MRI is associated with cognitive deficit in relapsing-remitting multiple sclerosis (RRMS). METHODS: Eighty-nine participants were enrolled in the study (58 patients with RRMS with a disease duration ≤10 years and 31 matched healthy controls). Patients were classified as cognitively impaired if they failed at least 2 tasks on the Brief Repeatable Battery. MRI was performed at 3T using (23)Na MRI to obtain total sodium concentration (TSC) in the different brain compartments (lesions, normal-appearing white matter [NAWM], gray matter [GM]) and (1)H- magnetization-prepared rapid gradient echo to assess GM atrophy (GM fraction). RESULTS: Th...
Introduction Neuroaxonal loss is the major pathological sub-strate of irreversible disability in Mul...
Background: Associations between brain total sodium concentration, disability, and disease progressi...
International audienceTo determine the metabolic counterparts of cerebral total sodium accumulations...
International audienceOBJECTIVE: To investigate whether brain total sodium accumulation assessed by ...
Objective Sodium (23 Na)-MRI is an emerging imaging technique to investigate in vivo changes in tiss...
OBJECTIVE: Sodium (23Na)-MRI is an emerging imaging technique to investigate in vivo changes in tiss...
Zaaraoui, Wafaa Konstandin, Simon Audoin, Bertrand Nagel, Armin M Rico, Audrey Malikova, Irina Souli...
Introduction: The source of Tissue Sodium Concentration (TSC) increase in Multiple Sclerosis (MS) re...
International audienceObjective: Quantification of brain injury in patients with variable disability...
Intra-axonal accumulation of sodium ions is one of the key mechanisms of delayed neuro-axonal degene...
Intra-axonal accumulation of sodium ions is one of the key mechanisms of delayed neuro-axonal degene...
Intra-axonal accumulation of sodium ions is one of the key mechanisms of delayed neuro-axonal degene...
Intra-axonal accumulation of sodium ions is one of the key mechanisms of delayed neuro-axonal degene...
In multiple sclerosis (MS), experimental and ex vivo studies indicate that pathologic intra- and ext...
none15siSodium MRI ( 23 Na-MRI) has been used to non-invasively quantify tissue sodium but has been ...
Introduction Neuroaxonal loss is the major pathological sub-strate of irreversible disability in Mul...
Background: Associations between brain total sodium concentration, disability, and disease progressi...
International audienceTo determine the metabolic counterparts of cerebral total sodium accumulations...
International audienceOBJECTIVE: To investigate whether brain total sodium accumulation assessed by ...
Objective Sodium (23 Na)-MRI is an emerging imaging technique to investigate in vivo changes in tiss...
OBJECTIVE: Sodium (23Na)-MRI is an emerging imaging technique to investigate in vivo changes in tiss...
Zaaraoui, Wafaa Konstandin, Simon Audoin, Bertrand Nagel, Armin M Rico, Audrey Malikova, Irina Souli...
Introduction: The source of Tissue Sodium Concentration (TSC) increase in Multiple Sclerosis (MS) re...
International audienceObjective: Quantification of brain injury in patients with variable disability...
Intra-axonal accumulation of sodium ions is one of the key mechanisms of delayed neuro-axonal degene...
Intra-axonal accumulation of sodium ions is one of the key mechanisms of delayed neuro-axonal degene...
Intra-axonal accumulation of sodium ions is one of the key mechanisms of delayed neuro-axonal degene...
Intra-axonal accumulation of sodium ions is one of the key mechanisms of delayed neuro-axonal degene...
In multiple sclerosis (MS), experimental and ex vivo studies indicate that pathologic intra- and ext...
none15siSodium MRI ( 23 Na-MRI) has been used to non-invasively quantify tissue sodium but has been ...
Introduction Neuroaxonal loss is the major pathological sub-strate of irreversible disability in Mul...
Background: Associations between brain total sodium concentration, disability, and disease progressi...
International audienceTo determine the metabolic counterparts of cerebral total sodium accumulations...