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在体 31P 波谱学通过完全绝热扩展像选择在体波谱学:3T 与 7T 的比较。

In vivo 31P spectroscopy by fully adiabatic extended image selected in vivo spectroscopy: a comparison between 3 T and 7 T.

机构信息

Department of Radiology, MR Center of Excellence, Medical University Vienna, Vienna, Austria.

出版信息

Magn Reson Med. 2011 Oct;66(4):923-30. doi: 10.1002/mrm.22897. Epub 2011 Mar 28.

Abstract

An improved image selected in vivo spectroscopy (ISIS) sequence for localized (31)P magnetic resonance spectroscopy at 7 T was developed. To reduce errors in localization accuracy, adiabatic excitation, gradient offset independent adiabatic inversion pulses, and a special extended ISIS ordering scheme were used. The localization accuracy of extended ISIS was investigated in phantoms. The possible spectral quality and reproducibility in vivo was explored in a volunteer (brain, muscle, and liver). A comparison between 3 T and 7 T was performed in five volunteers. Adiabatic extended ISIS provided high spectral quality and accurate localization. The contamination in phantom experiments was only ∼5%, even if a pulse repetition time ∼ 1.2·T(1) was chosen to maximize the signal-to-noise ratio per unit time. High reproducibility was found in the calf muscle for 2.5 cm isotropic voxels at 7 T. When compared with 3 T, localized (31)P magnetic resonance spectroscopy in the human calf muscle at 7 T provided ∼3.2 times higher signal-to-noise ratio (as judged from phosphocreatine peak amplitude in frequency domain after matched filtering). At 7 T, extended ISIS allowed the performance of high-quality localized (31)P magnetic resonance spectroscopy in a short measurement time (∼3 to 4 min) and isotropic voxel sizes of ∼2.5 to 3 cm. With such short measurement times, localized (31)P magnetic resonance spectroscopy has the potential to be applied not only for clinical research but also for routine clinical practice.

摘要

一种改进的体内选择磁共振波谱(ISIS)序列,用于在 7T 下进行局部(31)P 磁共振波谱,已被开发出来。为了降低定位精度误差,使用了绝热激发、梯度偏移独立绝热反转脉冲和特殊的扩展 ISIS 排序方案。在体模中研究了扩展 ISIS 的定位精度。在志愿者(脑、肌肉和肝脏)中探讨了体内可能的光谱质量和可重复性。在五名志愿者中进行了 3T 和 7T 的比较。绝热扩展 ISIS 提供了高光谱质量和精确的定位。即使选择脉冲重复时间约为 1.2·T(1)以最大化单位时间的信噪比,在体模实验中的污染也只有约 5%。在 7T 下,2.5cm 各向同性体素的小牛肌肉中发现了高重复性。与 3T 相比,7T 下人体小腿肌肉的局部(31)P 磁共振波谱提供了约 3.2 倍的更高信噪比(根据匹配滤波后频域中磷酸肌酸峰幅度判断)。在 7T 下,扩展 ISIS 允许在短测量时间(约 3 到 4 分钟)内进行高质量的局部(31)P 磁共振波谱,并具有约 2.5 到 3cm 的各向同性体素大小。由于测量时间如此之短,局部(31)P 磁共振波谱不仅有可能应用于临床研究,而且有可能应用于常规临床实践。

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