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在 9.4T 场强下使用 T(2)*-、相位和磁化率加权对比进行人体成像。

Human imaging at 9.4 T using T(2) *-, phase-, and susceptibility-weighted contrast.

机构信息

Max Planck Institute for Biological Cybernetics, Magnetic Resonance Center, Tübingen, Germany.

出版信息

Magn Reson Med. 2011 Feb;65(2):544-50. doi: 10.1002/mrm.22632. Epub 2010 Sep 24.

Abstract

The effect of susceptibility differences on an MR image is known to increase with field strength. Magnetic field inhomogeneities within the voxels influence the apparent transverse relaxation time T(2) *, while effects due to different precession frequencies between voxels caused by local field variations are evident in the image phase, and susceptibility-weighted imaging highlights the veins and deep brain structures. Here, these three contrast mechanisms are examined at a field strength of 9.4 T. The T(2) * maps generated allow the identification of white matter structures not visible in conventional images. Phase images with in-plane resolutions down to 130 μm were obtained, showing high gray/white matter contrast and allowing the identification of internal cortical structures. The susceptibility-weighted images yield excellent visibility of small venous structures and attain an in-plane resolution of 175 μm.

摘要

已知磁化率差异对磁共振图像的影响随磁场强度的增加而增大。体素内的磁场不均匀性会影响表观横向弛豫时间 T(2) *,而由于局部磁场变化导致的体素间不同进动频率的影响则在图像相位中显现出来,并且磁化率加权成像突出了静脉和深部脑结构。在这里,在 9.4 T 的场强下检查了这三种对比机制。生成的 T(2) *图允许识别在常规图像中不可见的白质结构。获得了平面分辨率低至 130 μm 的相位图像,显示出高的灰质/白质对比,并允许识别内部皮质结构。磁化率加权图像能够极好地显示小静脉结构,并达到 175 μm 的平面分辨率。

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