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敏感性、场不均匀性以及化学位移校正核磁共振显微镜:在人体手指活体中的应用。

Susceptibility, field inhomogeneity, and chemical shift-corrected NMR microscopy: application to the human finger in vivo.

作者信息

Weis J, Görke U, Kimmich R

机构信息

Universität Ulm, Sektion Kernresonanzspektroskopie, Ulm, Germany.

出版信息

Magn Reson Imaging. 1996;14(10):1165-75. doi: 10.1016/s0730-725x(96)00235-4.

Abstract

Spectroscopic proton image data recorded with the aid of a gradient-echo spectroscopic imaging pulse sequence are reported. A postdetection processing method is suggested which permits correction of artifacts due to inhomogeneity, susceptibility, and chemical-shift resonance offsets. That is, apart from the spectral information available in this way, better spatial resolutions can be achieved. The method is demonstrated by resonance-offset corrected images of the human finger in vivo. Moreover, resonance-line selective and spectroscopically resolved diffusion-weighted images and diffusivity maps rendered with the aid of the same postdetection procedure are shown.

摘要

报告了借助梯度回波光谱成像脉冲序列记录的质子光谱图像数据。提出了一种检测后处理方法,该方法可校正由于不均匀性、磁化率和化学位移共振偏移引起的伪影。也就是说,除了通过这种方式获得的光谱信息外,还可以实现更好的空间分辨率。该方法通过人体手指的体内共振偏移校正图像得到了验证。此外,还展示了借助相同检测后程序生成的共振线选择性和光谱分辨的扩散加权图像以及扩散率图。

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