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Validation of MRI biomarkers of hepatic steatosis in the presence of iron overload in the ob/ob mouse
Authors:Hines Catherine D G  Agni Rashmi  Roen Calista  Rowland Ian  Hernando Diego  Bultman Eric  Horng Debra  Yu Huanzhou  Shimakawa Ann  Brittain Jean H  Reeder Scott B
Institution:Department of Radiology, University of Wisconsin, Madison, Wisconsin, USA.
Abstract:

Purpose:

To validate the utility and performance of a Turn:x-wiley:10531807:media:JMRI22890:tex2gif-stack-1 correction method for hepatic fat quantification in an animal model of both steatosis and iron overload.

Materials and Methods:

Mice with low (n = 6), medium (n = 6), and high (n = 8) levels of steatosis were sedated and imaged using a chemical shift‐based fat‐water separation method to obtain magnetic resonance imaging (MRI) fat‐fraction measurements. Imaging was performed before and after each of two superparamagnetic iron oxide (SPIO) injections to create hepatic iron overload. Fat‐fraction maps were reconstructed with and without Turn:x-wiley:10531807:media:JMRI22890:tex2gif-stack-2 correction. Fat‐fraction with and without Turn:x-wiley:10531807:media:JMRI22890:tex2gif-stack-3 correction and Turn:x-wiley:10531807:media:JMRI22890:tex2gif-stack-4 measurements were compared after each injection. Liver tissue was harvested and imaging results were compared to triglyceride extraction and histology grading.

Results:

Excellent correlation was seen between MRI fat‐fraction and tissue‐based fat quantification. Injections of SPIOs led to increases in Rurn:x-wiley:10531807:media:JMRI22890:tex2gif-stack-5 (=1/Turn:x-wiley:10531807:media:JMRI22890:tex2gif-stack-6). Measured fat‐fraction was unaffected by the presence of iron when Turn:x-wiley:10531807:media:JMRI22890:tex2gif-stack-7 correction was used, whereas measured fat‐fraction dramatically increased without Turn:x-wiley:10531807:media:JMRI22890:tex2gif-stack-8 correction.

Conclusion:

Hepatic fat‐fraction measured using a Turn:x-wiley:10531807:media:JMRI22890:tex2gif-stack-9‐corrected chemical shift‐based fat‐water separation method was validated in an animal model of steatosis and iron overload. Turn:x-wiley:10531807:media:JMRI22890:tex2gif-stack-10 correction enables robust fat‐fraction estimation in both the presence and absence of iron, and is necessary for accurate hepatic fat quantification. J. Magn. Reson. Imaging 2012;35:844–851. © 2011 Wiley Periodicals, Inc.
Keywords:hepatic steatosis  iron overload  IDEAL  chemical shift  mice  T correction  SPIO
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