扩散加权的图像质量分析

Ulrich Dorenbeck , Nils Zorger , Stefan Feuerbach
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引用次数: 1

摘要

目的:单次回波平面扩散加权成像(EPI DWI)需要扩展梯度设施,具有强、快速切换梯度。目前EPI DWI的图像质量受到各种伪影的影响很大。因此,我们使用1.5 T MR扫描仪,在梯度场强为40 mt/m,上升时间为200 μs, slewrate为200 T/m/s的条件下,评估EPI DWI显示解剖结构的图像质量。材料与方法:采用四类评价量表,两名独立阅读者对50张DWI图像上12个不同的脑幕下和幕上解剖区域进行评价,并与相应的T2涡旋回波图像进行比较。结果:没有区域被判定为不可区分。轴向DWI图像对脑干的评估较差。在壳核和丘脑水平,DWI的图像质量从一般到优异。中央沟和白质和灰质的边界被评估为充分可见。观察者之间的可变性表明两个读者之间的一致性很好。结论:EPI DWI图像质量随着梯度场强的增大而提高。200 μs上升时间的缩短和200 T/m/s的吸液速率将导致更快的梯度切换。单次EPI DWI受图像伪影的影响较小,当使用梯度场强较高的MR扫描仪时,不同解剖结构的呈现更加有利。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analyse der Bildqualität einer diffusionsgewichteten (EPI DWI) Sequenz: Untersuchungen an einem 1,5 T MRT mit höherer Gradientenfeldstärke

Purpose: Single – shot echo planar Diffusion – weighted – Imaging (EPI DWI) requires extended gradient facilities with strong, fast switching gradients. Up to now the image quality of EPI DWI is enormously influenced by some kinds of artifacts. Therefore we evaluated the image quality of EPI DWI in demonstrating anatomical structures using a 1.5 T MR scanner with a higher gradient field strength of 40 mt/m, a risetime of 200 μs and a slewrate of 200 T/m/s.

Materials and methods: Using an evaluation scale with four categories two independent readers evaluated 12 different infra – and supratentorial anatomic regions of the brain on 50 DWI images and compared them with the corresponding T2 turbospin echo image.

Results: No region was judged to be undistinguishable. On axial DWI images the assessment of the brain stem was poor. In the level of the putamen and thalamus the image quality of DWI was judged to be from adequate to excellent. The central sulcus and the boundary of the white and grey matter was assessed to be adequately visible. The interobserver variability showed a good agreement between the two readers.

Conclusion: The image quality of EPI DWI improves from a higher gradient field strength. The shortening rise time of 200 μs and the slewrate of 200 T/m/s will lead to a faster gradient switching. Single shot EPI DWI is less influenced by image artefacts and the presentation of different anatomical structures profits when a MR scanner with higher gradient field strength is used.

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