In the clinical MRI practice, it is common to assess liver iron overload by T2* multi-echo gradient-echo images. However, there is no full consensus about the best image analysis approach for the T2* measurements. The currently used methods involve manual drawing of a region of interest (ROI) within MR images of the liver. Evaluation of a representative liver T2* value is done by fitting an appropriate model to the signal decay within the ROIs vs. the echo time. The resulting T2* value may depend on both ROI placement and choice of the signal decay model. The aim of this study was to understand how the choice of the analysis methodology may affect the accuracy of T2* measurements. A software model of the iron overloaded liver was inferred f...
T2* is a magnetic relaxation property of any tissue and is inversely related to intracellular iron s...
Liver iron overload is the histological hallmark of hereditary hemochromatosis and transfusional hem...
International audienceObjectives - To evaluate the performance and limitations of the R2* and signal...
In the clinical MRI practice, it is common to assess liver iron overload by T2* multi-echo gradient-...
In the clinical MRI practice, it is common to assess liver iron overload by T2* multi-echo gradient-...
Assessment of iron overload in liver by T2* magnetic resonance imaging (MRI) is a widely used clinic...
Purpose: To improve liver iron load assessment by investigating the precision of different approache...
PURPOSE: To evaluate the effectiveness of the single ROI approach for the detection of hepatic i...
BACKGROUND AND OBJECTIVESMRI-R2* has been accepted as a clinical tool for monitoring iron overload i...
Magnetic resonance imaging (MRI) has been considered for the quantification of iron overload in the ...
Hepatic iron overload is a severe complication in patients receiving chronic blood transfusions for ...
International audiencePURPOSE:To evaluate the performance and limitations of the signal intensity ra...
Background: The aim of the study was to quantify hepatic iron by MRI for practical use. Methods: In ...
Background: Measurement of liver MRI T2* and R2* is emerging as a reliable alternative to liver biop...
Liver iron overload is the histological hallmark of hereditary hemochromatosis and transfusional hem...
T2* is a magnetic relaxation property of any tissue and is inversely related to intracellular iron s...
Liver iron overload is the histological hallmark of hereditary hemochromatosis and transfusional hem...
International audienceObjectives - To evaluate the performance and limitations of the R2* and signal...
In the clinical MRI practice, it is common to assess liver iron overload by T2* multi-echo gradient-...
In the clinical MRI practice, it is common to assess liver iron overload by T2* multi-echo gradient-...
Assessment of iron overload in liver by T2* magnetic resonance imaging (MRI) is a widely used clinic...
Purpose: To improve liver iron load assessment by investigating the precision of different approache...
PURPOSE: To evaluate the effectiveness of the single ROI approach for the detection of hepatic i...
BACKGROUND AND OBJECTIVESMRI-R2* has been accepted as a clinical tool for monitoring iron overload i...
Magnetic resonance imaging (MRI) has been considered for the quantification of iron overload in the ...
Hepatic iron overload is a severe complication in patients receiving chronic blood transfusions for ...
International audiencePURPOSE:To evaluate the performance and limitations of the signal intensity ra...
Background: The aim of the study was to quantify hepatic iron by MRI for practical use. Methods: In ...
Background: Measurement of liver MRI T2* and R2* is emerging as a reliable alternative to liver biop...
Liver iron overload is the histological hallmark of hereditary hemochromatosis and transfusional hem...
T2* is a magnetic relaxation property of any tissue and is inversely related to intracellular iron s...
Liver iron overload is the histological hallmark of hereditary hemochromatosis and transfusional hem...
International audienceObjectives - To evaluate the performance and limitations of the R2* and signal...