Background: Blood oxygen level-dependent magnetic resonance imaging (BOLD-MRI) has been widely used to assess renal oxygenation changes in different kidney diseases in recent years. This study was designed to evaluate and compare renal tissue oxygenation using 2 BOLD-MRI analysis methods, namely, the regional and whole-kidney region of interest (ROI) selection methods. Methods: The study ended up with 10 healthy controls and 40 chronic kidney disease (CKD) patients without dialysis. Their renal BOLD-MRI data were analyzed using whole-kidney ROI selection method and compared with regional ROI selection method. Results: We found the cortical, medullary, and whole-kidney R2* values were significantly higher in CKD patients than those in contro...
Blood oxygen level-dependent (BOLD) contrast magnetic resonance imaging (MRI) has been applied to in...
Renal tissue hypoxia is a final pathway in the development and progression of chronic kidney disease...
Determinations of renal oxygenation by blood oxygenation level-dependent magnetic resonance imaging ...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
BOLD-MRI (blood oxygenation-level dependent magnetic resonance imaging) allows non-invasive measurem...
BOLD-MRI (blood oxygenation-level dependent magnetic resonance imaging) allows non-invasive measurem...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Background: Blood-oxygen-level-dependent (BOLD) magnetic resonance imaging (MRI) can provide regiona...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Aim: Blood oxygen level-dependent magnetic resonance imaging (BOLD-MRI) can measure deoxyhemoglobin ...
Blood oxygen level-dependent (BOLD) contrast magnetic resonance imaging (MRI) has been applied to in...
Renal tissue hypoxia is a final pathway in the development and progression of chronic kidney disease...
Determinations of renal oxygenation by blood oxygenation level-dependent magnetic resonance imaging ...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
BOLD-MRI (blood oxygenation-level dependent magnetic resonance imaging) allows non-invasive measurem...
BOLD-MRI (blood oxygenation-level dependent magnetic resonance imaging) allows non-invasive measurem...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Background: Blood-oxygen-level-dependent (BOLD) magnetic resonance imaging (MRI) can provide regiona...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Tissue hypoxia plays a key role in the development and progression of many kidney diseases. Blood ox...
Aim: Blood oxygen level-dependent magnetic resonance imaging (BOLD-MRI) can measure deoxyhemoglobin ...
Blood oxygen level-dependent (BOLD) contrast magnetic resonance imaging (MRI) has been applied to in...
Renal tissue hypoxia is a final pathway in the development and progression of chronic kidney disease...
Determinations of renal oxygenation by blood oxygenation level-dependent magnetic resonance imaging ...