Fast three-point dixon MR imaging using low-resolution images for phase correction: a comparison with chemical shift selective fat suppression for pediatric musculoskeletal imaging.

OBJECTIVE The purpose of this study is to describe and to implement a new fast three-point Dixon MR imaging sequence with online image reconstruction, and to compare this sequence with conventional chemical shift selective (CHESS) suppression of fat in pediatric musculoskeletal imaging. SUBJECTS AND METHODS A three-point Dixon technique using a fast spin-echo sequence with a new phase-correction algorithm providing online image reconstruction was implemented on a 1.5-T scanner. Twelve pediatric patients and young adults were imaged with both the new three-point Dixon and conventional CHESS sequences. Three radiologists un-aware of imaging parameters and clinical information independently scored the homogeneity of fat suppression and conspicuity of abnormality using a four-point system. An additional comparison between the two techniques was made using a phantom. RESULTS The three-point Dixon method showed superior fat suppression and lesion conspicuity (p < 0.001), particularly in the hands and feet, where CHESS is prone to inconsistent fat suppression. The phantom study showed no significant difference in the ratio of suppressed fat signal to background noise and more homogeneous fat suppression using the three-point Dixon method. CONCLUSION Compared with CHESS, the new fast three-point Dixon sequence with online image reconstruction provides superior fat suppression and lesion conspicuity and can be routinely used in pediatric musculoskeletal imaging.

[1]  G H Glover,et al.  Three‐point dixon technique for true water/fat decomposition with B0 inhomogeneity correction , 1991, Magnetic resonance in medicine.

[2]  D Li,et al.  A three‐point dixon method for water and fat separation using 2D and 3D gradient‐echo techniques , 1998, Journal of magnetic resonance imaging : JMRI.

[3]  F A Jolesz,et al.  Optimization of chemical shift selective suppression of fat , 1998, Magnetic resonance in medicine.

[4]  G. Glover Multipoint dixon technique for water and fat proton and susceptibility imaging , 1991, Journal of magnetic resonance imaging : JMRI.

[5]  M. Maas,et al.  Uniform fat suppression in hands and feet through the use of two-point Dixon chemical shift MR imaging. , 1999, Radiology.

[6]  Fat suppression using direct phase encoding: musculoskeletal applications using MR imaging. , 1999, AJR. American journal of roentgenology.

[7]  G H Glover,et al.  Prostatic MR imaging performed with the three-point Dixon technique. Work in progress. , 1991, Radiology.

[8]  Application of a three-point method for water-fat MR imaging in children , 1999, Pediatric Radiology.

[9]  G. Glover,et al.  Breast cancer: gadolinium-enhanced MR imaging with a 0.5-T open imager and three-point Dixon technique. , 1998, Radiology.

[10]  W. Edelstein,et al.  The intrinsic signal‐to‐noise ratio in NMR imaging , 1986, Magnetic resonance in medicine.

[11]  Jean A. Tkach,et al.  Separation of fat and water in fast spin‐echo MR imaging with the three‐point dixon technique , 1995, Journal of magnetic resonance imaging : JMRI.

[12]  R V Mulkern,et al.  Fast three-point Dixon MR imaging of the retrobulbar space with low-resolution images for phase correction: comparison with fast spin-echo inversion recovery imaging. , 2001, AJNR. American journal of neuroradiology.

[13]  W. T. Dixon Simple proton spectroscopic imaging. , 1984, Radiology.