Background and Aims: Validation of non-invasive methods of liver fat quantification requires a reference standard. However, using standard histopathology assessment of liver biopsies is problematical because of poor repeatability. We aimed to assess a stereological method of measuring volumetric liver fat fraction (VLFF) in liver biopsies and to use the method to validate a magnetic resonance imaging method for measurement of VLFF. Methods: VLFFs were measured in 59 subjects (1) by three independent analysts using a stereological point counting technique combined with the Delesse principle on liver biopsy histological sections and (2) by three independent analysts using the HepaFat-Scan® technique on magnetic resonance images of the liver. ...
Background and AimMagnetic resonance imaging (MRI) and magnetic resonance spectroscopy (MRS) are imp...
PurposeTo determine if the concordance of magnetic resonance (MR) imaging and MR spectroscopic data ...
International audiencePurpose: To validate a magnitude-based method, transposable on any imaging sys...
BACKGROUND AND AIMS: Validation of non-invasive methods of liver fat quantification requires a refer...
Background and Aims Validation of non-invasive methods of liver fat quantification requires a refer...
© 2016 St. Pierre et al. This is an open access article distributed under the terms of the Creative ...
Background: There is growing interest in the role of hepatic steatosis in liver injury. The current ...
Objective: The purpose of this study was to evaluate the ability of a whole liver volume (WLV) segme...
To assess the degree of hepatic fat content, simple and noninvasive methods with high objectivity an...
Background & Aims: Pathologists quantify liver steatosis as the fraction of lipid droplet-containing...
Background: Steatosis is routinely assessed histologically in clinical practice and research. Automa...
Background & Aims: Pathologists quantify liver steatosis as the fraction of lipid droplet-contai...
Background Steatosis is routinely assessed histologically in clinical practice and research. Automat...
Background/Aims: Since the introduction of ultrasonography, liver steatosis has become an increasing...
International audiencePurpose: To validate a magnitude-based method, transposable on any imaging sys...
Background and AimMagnetic resonance imaging (MRI) and magnetic resonance spectroscopy (MRS) are imp...
PurposeTo determine if the concordance of magnetic resonance (MR) imaging and MR spectroscopic data ...
International audiencePurpose: To validate a magnitude-based method, transposable on any imaging sys...
BACKGROUND AND AIMS: Validation of non-invasive methods of liver fat quantification requires a refer...
Background and Aims Validation of non-invasive methods of liver fat quantification requires a refer...
© 2016 St. Pierre et al. This is an open access article distributed under the terms of the Creative ...
Background: There is growing interest in the role of hepatic steatosis in liver injury. The current ...
Objective: The purpose of this study was to evaluate the ability of a whole liver volume (WLV) segme...
To assess the degree of hepatic fat content, simple and noninvasive methods with high objectivity an...
Background & Aims: Pathologists quantify liver steatosis as the fraction of lipid droplet-containing...
Background: Steatosis is routinely assessed histologically in clinical practice and research. Automa...
Background & Aims: Pathologists quantify liver steatosis as the fraction of lipid droplet-contai...
Background Steatosis is routinely assessed histologically in clinical practice and research. Automat...
Background/Aims: Since the introduction of ultrasonography, liver steatosis has become an increasing...
International audiencePurpose: To validate a magnitude-based method, transposable on any imaging sys...
Background and AimMagnetic resonance imaging (MRI) and magnetic resonance spectroscopy (MRS) are imp...
PurposeTo determine if the concordance of magnetic resonance (MR) imaging and MR spectroscopic data ...
International audiencePurpose: To validate a magnitude-based method, transposable on any imaging sys...