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二维射频脉冲编码曲面切片成像

2D-RF-pulse-encoded curved-slice imaging.

作者信息

Börnert Peter

机构信息

Department Technical Systems, Philips Research, Röntgenstrasse 24-26, 22335 Hamburg, Germany.

出版信息

MAGMA. 2003 Jul;16(2):86-92. doi: 10.1007/s10334-003-0010-z. Epub 2003 Jul 8.

Abstract

A new approach to curved-slice imaging is described in which spatial resolution is achieved using 2D-RF-pulse- and conventional-frequency encoding. This approach offers the opportunity to image curved anatomical structures directly using curved single-slice MRI. A set of 2D-RF pulses is employed to excite transverse magnetization in an arbitrarily shaped curved-slice profile in three-dimensional space. Spatial resolution along the curved-slice direction is achieved by encoding the different volume elements of the slice using a set of specially designed RF pulses and an appropriate encoding scheme. The remaining spatial direction is measured using conventional-frequency encoding. Phantom and in vivo experiments were carried out to illustrate the basic feasibility and the limitations of this approach.

摘要

本文描述了一种用于曲面切片成像的新方法,该方法利用二维射频脉冲和传统频率编码来实现空间分辨率。这种方法提供了使用曲面单层磁共振成像直接对弯曲解剖结构进行成像的机会。使用一组二维射频脉冲在三维空间中激发任意形状的曲面切片轮廓中的横向磁化。通过使用一组专门设计的射频脉冲和适当的编码方案对切片的不同体素进行编码,实现沿曲面切片方向的空间分辨率。其余空间方向则使用传统频率编码进行测量。进行了体模实验和体内实验,以说明该方法的基本可行性和局限性。

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