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一种用于教授基础和高级磁共振成像技术的图形模拟器。

A graphical simulator for teaching basic and advanced MR imaging techniques.

作者信息

Hanson Lars G

机构信息

Danish Research Center for Magnetic Resonance, Copenhagen University Hospital Hvidovre, Dept 340, Kettegård Allé 30, DK-2650 Hvidovre, Denmark.

出版信息

Radiographics. 2007 Nov-Dec;27(6):e27. doi: 10.1148/radiographics.27.6.e27. Epub 2007 Sep 7.

Abstract

Teaching of magnetic resonance (MR) imaging techniques typically involves considerable handwaving, literally, to explain concepts such as resonance, rotating frames, dephasing, refocusing, sequences, and imaging. A proper understanding of MR contrast and imaging techniques is crucial for radiologists, radiographers, and technical staff alike, but it is notoriously challenging to explain spin dynamics by using traditional teaching tools. The author developed a freely available graphical simulator based on the Bloch equations to aid in the teaching of topics ranging from precession and relaxation to advanced concepts such as stimulated echoes, spin tagging, and k-space-methods. A graphical user interface provides the user with a three-dimensional view of spin isochromates that can be manipulated by selecting radiofrequency pulses and gradient events. Even complicated sequences can be visualized in an intuitive way. The cross-platform software is primarily designed for use in lectures, but is also useful for self studies and student assignments. Movies available at http://radiographics.rsnajnls.org/cgi/content/full/e27/DC1.

摘要

磁共振(MR)成像技术的教学通常需要大量的手势比划,确切地说是为了解释诸如共振、旋转坐标系、去相位、重聚焦、序列和成像等概念。对于放射科医生、放射技师和技术人员而言,正确理解MR对比度和成像技术至关重要,但使用传统教学工具来解释自旋动力学极具挑战性。作者基于布洛赫方程开发了一款免费的图形模拟器,以辅助从进动和弛豫到诸如受激回波、自旋标记和k空间方法等高级概念的教学。图形用户界面为用户提供了自旋等色线的三维视图,可通过选择射频脉冲和梯度事件进行操作。即使是复杂的序列也能以直观的方式可视化。这款跨平台软件主要设计用于讲座,但对自学和学生作业也很有用。可在http://radiographics.rsnajnls.org/cgi/content/full/e27/DC1获取相关影片。

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