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Comparison of dynamic MRI at 3.0T and MDCT of pancreatobiliary disease: Evaluation with source,MPR, CPR,and MIP images for image quality and hepatic arterial and portal venous vessel conspicuity
Authors:Masafumi Uchida MD  Jun Sakoda MD  Shunji Arikawa MD  Yukiko Kunou MD  Masatoshi Ishibashi MD  Toshi Abe MD  Naofumi Hayabuchi MD
Institution:Department of Radiology, Kurume University School of Medicine, Kurume City, Japan
Abstract:

Purpose

To compare contrast material‐enhanced three‐dimensional (3D) magnetic resonance imaging (MRI) at 3.0T and multidetector row computed tomography (MDCT) in the same patient with regard to image quality of pancreatobiliary disease and hepatic vascular conspicuity.

Materials and Methods

This study enrolled 32 patients with pancreatobiliary disease who underwent both gadolinium‐enhanced 3D dynamic MRI and multiphasic CT using 16‐MDCT. Data analysis of image quality was performed by two radiologists based on source images, multiplanar reconstruction (MPR), curved planar reconstruction (CPR), and maximum intensity projection (MIP) reconstruction. Determination of image quality was based on a 4‐point image quality rating scale.

Results

The overall image quality of the MRI axial images was superior to that of the axial MDCT images. The MRI protocol yielded an average score of 3.8 points versus 3.5 for the CT imaging. No significant difference was found between 3.0T MRI and MDCT images in MPR or CPR image quality. Image quality for visualization of the distal intrahepatic segmental arteries was significantly improved using MDCT imaging. No significant difference was found between the MDCT and 3.0T MR in portal vein branch image quality.

Conclusion

High‐resolution dynamic contrast‐enhanced MR imaging at 3.0T is a comprehensive technique which provides high image quality in pancreatobiliary disease. J. Magn. Reson. Imaging 2009;29:846–852. © 2009 Wiley‐Liss, Inc.
Keywords:enhanced dynamic MRI  multi‐detector row CT  pancreatobiliary disease  multiplanar reconstruction  curved planar reconstruction  maximum intensity projection
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