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视神经及视神经鞘的磁共振成像:校正化学位移配准错误效应。

MR imaging of the optic nerve and sheath: correcting the chemical shift misregistration effect.

作者信息

Daniels D L, Kneeland J B, Shimakawa A, Pojunas K W, Schenck J F, Hart H, Foster T, Williams A L, Haughton V M

出版信息

AJNR Am J Neuroradiol. 1986 Mar-Apr;7(2):249-53.

Abstract

The interface between soft-tissue structures and adipose tissue may be obscured by the chemical shift misregistration effect on MR images. In the orbit, this effect occurs at the edges at the optic nerve, even on high-resolution local coil images. In both phantom and clinical studies with a 1.5 T local coil imaging system, it was found that the chemical shift misregistration effect can be minimized by positioning the patient so that the optic nerve is parallel to the frequency encoding gradient. Alternatively, the effect can be corrected by using a computer program to combine "lipid" and "water" proton images. The sensitivity of MR for optic nerve lesions should be improved by these technical modifications.

摘要

软组织结构与脂肪组织之间的界面可能会因磁共振成像(MR)上的化学位移配准错误效应而变得模糊。在眼眶中,即使在高分辨率局部线圈图像上,这种效应也会出现在视神经边缘。在使用1.5T局部线圈成像系统的模型和临床研究中发现,通过调整患者体位使视神经与频率编码梯度平行,可将化学位移配准错误效应降至最低。或者,可通过使用计算机程序组合“脂质”和“水质子”图像来校正这种效应。这些技术改进应能提高MR对视神经病变的敏感性。

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