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质子双量子滤波磁共振成像——一种用于有序组织成像的新方法。

Proton double-quantum filtered MRI--a new method for imaging ordered tissues.

作者信息

Tsoref L, Shinar H, Seo Y, Eliav U, Navon G

机构信息

School of Physics, Tel Aviv University, Israel.

出版信息

Magn Reson Med. 1998 Nov;40(5):720-6. doi: 10.1002/mrm.1910400512.

Abstract

The imaging of connective tissues such as cartilage and tendons using standard MRI techniques is hampered by their low signal relative to the surrounding tissues. 1H double-quantum filtered (DQF) MRI is an imaging method that detects molecules associated with ordered structures, while the signal from isotropic fluids is filtered out, thus creating a new type of contrast. The technique is demonstrated on an intact rat tail, where the image of the tendons is highlighted. Although the signal-to-noise ratio is inferior to that in gradient-echo MRI, the contrast between the tendons and the surrounding tissues is significantly better in the DQF MRI. It is demonstrated how, by adjusting the parameters of the DQF imaging pulse sequence, one can modify the contrast and enhance the images of specific compartments within an organ. A comparison with 2H DQF imaging of the same tissue is also given.

摘要

使用标准磁共振成像(MRI)技术对软骨和肌腱等结缔组织进行成像时,由于它们相对于周围组织的信号较低而受到阻碍。氢质子双量子滤波(DQF)MRI是一种成像方法,可检测与有序结构相关的分子,同时滤除各向同性流体的信号,从而产生一种新型对比度。该技术在完整的大鼠尾巴上得到了验证,其中肌腱的图像得到了突出显示。尽管信噪比低于梯度回波MRI,但在DQF MRI中,肌腱与周围组织之间的对比度明显更好。展示了如何通过调整DQF成像脉冲序列的参数来改变对比度并增强器官内特定区域的图像。还给出了与同一组织的氘质子DQF成像的比较。

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