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3T乳腺扩散加权成像中基于切片的动态匀场和中心频率更新

Dynamic slice-dependent shim and center frequency update in 3 T breast diffusion weighted imaging.

作者信息

Lee Seung-Kyun, Tan Ek Tsoon, Govenkar Ambey, Hancu Ileana

机构信息

GE Global Research Center, Niskayuna, New York, USA.

出版信息

Magn Reson Med. 2014 May;71(5):1813-8. doi: 10.1002/mrm.24824. Epub 2013 Jun 24.

Abstract

PURPOSE

To demonstrate dynamic slice-dependent shim update as a simple method to reduce susceptibility-induced B0 inhomogeneity and associated pixel shift artifacts in diffusion-weighted echo planar imaging (DW-EPI) in 3 T breast imaging.

METHODS

Dynamic slice-dependent update of linear shim and center frequency was implemented in a dual-echo B0 mapping sequence and a DW-EPI sequence. Multi-slice axial B0 maps and diffusion-weighted images were obtained from four volunteers with both conventional and dynamic shim methods. The two shim methods were compared in terms of B0 homogeneity and EPI pixel shift artifacts.

RESULTS

In all volunteers the B0 maps showed significantly improved homogeneity; the left-right asymmetry was reduced by 79% and within-slice B0 standard deviation was reduced by 20% on the average. The improvements were better than what was previously reported for conventional (static) third-order shim in bilateral breast. Anatomy-referenced apparent diffusion coefficient (ADC) maps showed reduced overall image registration error obtainable with dynamic shim.

CONCLUSIONS

Dynamic shim is an effective method to improve B0 shimming and DW-EPI image quality in 3 T bilateral breast imaging. Magn Reson Med 71:1813-1818, 2014. © 2013 Wiley Periodicals, Inc.

摘要

目的

在3T乳腺成像中,演示动态层面相关匀场更新作为一种简单方法,以减少扩散加权回波平面成像(DW-EPI)中由磁化率引起的B0不均匀性及相关像素移位伪影。

方法

在双回波B0映射序列和DW-EPI序列中实施线性匀场和中心频率的动态层面相关更新。采用传统匀场方法和动态匀场方法,从4名志愿者获取多层面轴向B0图和扩散加权图像。比较两种匀场方法在B0均匀性和EPI像素移位伪影方面的表现。

结果

在所有志愿者中,B0图显示均匀性显著改善;左右不对称性平均降低79%,层面内B0标准差平均降低20%。这些改善优于先前报道的双侧乳腺传统(静态)三阶匀场效果。解剖学参考表观扩散系数(ADC)图显示,动态匀场可降低整体图像配准误差。

结论

动态匀场是改善3T双侧乳腺成像中B0匀场和DW-EPI图像质量的有效方法。《磁共振医学》71:1813 - 1818, 2014。© 2013威利期刊公司。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fbb/3830606/ccf16d02201b/nihms479183f1.jpg

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