<b>Objective:</b> We describe the first clinical application of transient hyperoxia (“oxygen challenge”) during T2*-weighted magnetic resonance imaging (MRI), to detect differences in vascular deoxyhemoglobin between tissue compartments following stroke.<p></p> <b>Methods:</b> Subjects with acute ischemic stroke were scanned with T2*-weighted MRI and oxygen challenge. For regions defined as infarct core (diffusion-weighted imaging lesion) and presumed penumbra (perfusion-diffusion mismatch [threshold = T<sub>max</sub> ≥4 seconds], or regions exhibiting diffusion lesion expansion at day 3), T2*-weighted signal intensity–time curves corresponding to the duration of oxygen challenge were...
Background Mapping the hypoxic brain in acute ischemic stroke has considerable potential for both ...
Magnetic resonance imaging (MRI) with oxygen challenge (T(2)(*) OC) uses oxygen as a metabolic biotr...
BACKGROUND: Thrombolytic treatment for acute stroke has focused attention on accurate identification...
CERVOXYInternational audienceAcute ischemic stroke results in ischemic core surrounded by a tissue a...
We describe a novel magnetic resonance imaging technique for detecting metabolism indirectly through...
International audienceRecent advances in MRI methodology, such as microvascular and brain oxygenatio...
Accurate identification of ischemic penumbra will improve stroke patient selection for reperfusion t...
Accurate identification of ischemic penumbra will improve stroke patient selection for reperfusion t...
Metabolic markers of baseline brain oxygenation and tissue perfusion have an important role to play ...
Recent clinical trials of new revascularization therapies in acute ischemic stroke have highlighted ...
Metabolic markers of baseline brain oxygenation and tissue perfusion have an important role to play ...
The original description of the ischaemic penumbra asserted that both cerebral blood flow and metabo...
Purpose: Quantitative T2'-mapping detects regional changes of the relation of oxygenated and deoxyge...
PURPOSE:Quantitative T2'-mapping detects regional changes of the relation of oxygenated and deoxygen...
Oxygen challenge imaging involves transient hyperoxia applied during deoxyhaemoglobin sensitive (T2*...
Background Mapping the hypoxic brain in acute ischemic stroke has considerable potential for both ...
Magnetic resonance imaging (MRI) with oxygen challenge (T(2)(*) OC) uses oxygen as a metabolic biotr...
BACKGROUND: Thrombolytic treatment for acute stroke has focused attention on accurate identification...
CERVOXYInternational audienceAcute ischemic stroke results in ischemic core surrounded by a tissue a...
We describe a novel magnetic resonance imaging technique for detecting metabolism indirectly through...
International audienceRecent advances in MRI methodology, such as microvascular and brain oxygenatio...
Accurate identification of ischemic penumbra will improve stroke patient selection for reperfusion t...
Accurate identification of ischemic penumbra will improve stroke patient selection for reperfusion t...
Metabolic markers of baseline brain oxygenation and tissue perfusion have an important role to play ...
Recent clinical trials of new revascularization therapies in acute ischemic stroke have highlighted ...
Metabolic markers of baseline brain oxygenation and tissue perfusion have an important role to play ...
The original description of the ischaemic penumbra asserted that both cerebral blood flow and metabo...
Purpose: Quantitative T2'-mapping detects regional changes of the relation of oxygenated and deoxyge...
PURPOSE:Quantitative T2'-mapping detects regional changes of the relation of oxygenated and deoxygen...
Oxygen challenge imaging involves transient hyperoxia applied during deoxyhaemoglobin sensitive (T2*...
Background Mapping the hypoxic brain in acute ischemic stroke has considerable potential for both ...
Magnetic resonance imaging (MRI) with oxygen challenge (T(2)(*) OC) uses oxygen as a metabolic biotr...
BACKGROUND: Thrombolytic treatment for acute stroke has focused attention on accurate identification...