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通过磁化反转测量翻转角:在超极化(3)氦磁共振成像肺实验中磁化章动角的校准。

Flip-angle measurement by magnetization inversion: Calibration of magnetization nutation angle in hyperpolarized (3) He magnetic resonance imaging lung experiments.

机构信息

Section of Medical Physics, Department of Diagnostic and Interventional Radiology, Johannes Gutenberg University Medical Center, Mainz, Germany.

出版信息

Magn Reson Med. 2011 Feb;65(2):399-408. doi: 10.1002/mrm.22638. Epub 2010 Sep 29.

Abstract

The aim of this work was to establish a new, fast, and robust method of flip-angle calibration for magnetic resonance imaging of hyperpolarized (3) He. The method called flip-angle measurement with magnetization inversion is based on acquiring images from periodically inverted longitudinal magnetization created using the spatial modulation of magnetization technique. By measuring the width of the area where the magnetization was inverted by the spatial modulation of magnetization preparation in phase images, the flip angle can be generated using a simple equation. To validate and establish the limits of the proposed method, flip-angle measurement with magnetization inversion acquisitions were simulated and applied to proton and hyperpolarized (3) He phantoms. Then, the calibration procedure was applied during hyperpolarized (3) He magnetic resonance imaging in a healthy volunteer. The advantage of the flip-angle measurement with magnetization inversion method compared with the conventional method based on the assessment of radiofrequency-decay is that it is free of errors induced by relaxation due to oxygen, by imperfect excitation slice profile and by any diffusion of (3) He into and out of the slice. Another advantage is that it does not require image processing with external software and therefore can be performed using the implemented tools on the magnetic resonance workstation.

摘要

本工作旨在为超极化 (3)He 磁共振成像建立一种新的、快速且稳健的翻转角校准方法。该方法称为利用磁化反转进行翻转角测量,它基于使用磁化空间调制技术产生的周期性反转纵向磁化来获取图像。通过测量在同相图像中磁化反转的空间调制准备区域的宽度,可以使用简单的方程生成翻转角。为了验证和确定所提出方法的限制,对利用磁化反转采集进行的翻转角测量进行了模拟,并将其应用于质子和超极化 (3)He 体模。然后,在健康志愿者的超极化 (3)He 磁共振成像中应用了校准程序。与基于射频衰减评估的传统方法相比,利用磁化反转进行翻转角测量的方法的优点是它不受由于氧气引起的弛豫、不完美的激励切片轮廓以及 (3)He 进入和离开切片的任何扩散引起的误差的影响。另一个优点是它不需要使用外部软件进行图像处理,因此可以使用磁共振工作站上实现的工具来执行。

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