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在7T磁场下,使用局部B1校准改善人体小腿肌肉质子波谱中的信噪比。

Improved signal to noise in proton spectroscopy of the human calf muscle at 7 T using localized B1 calibration.

作者信息

Versluis Maarten J, Kan Hermien E, van Buchem Mark A, Webb Andrew G

机构信息

Department of Radiology, Leiden University Medical Center, Leiden, The Netherlands.

出版信息

Magn Reson Med. 2010 Jan;63(1):207-11. doi: 10.1002/mrm.22195.

Abstract

Large variations of tip angle within a slice can lead to suboptimal pulse power optimization using standard techniques, which measure the average tip angle over a slice; this effect is especially pronounced at fields of 7 T and above. A technique was introduced that performed a volume-selective power optimization in less than 10 sec and automatically calibrates the radiofrequency pulses for subsequent spectroscopy scans. Using this technique, MR spectra were acquired in the human calf of seven healthy volunteers with a partial volume Tx/Rx coil. Increases in signal-to-noise ratio based upon the unsuppressed water signal between 22+/-5% and 166+/-42%, compared to spectra obtained with the conventional power calibration technique, were measured in different regions of the calf muscle. This new technique was able to measure the inhomogeneous radiofrequency field at 7 T and its use resulted in a considerable signal-to-noise ratio increase.

摘要

切片内翻转角的大幅变化会导致使用标准技术进行脉冲功率优化时效果欠佳,因为这些技术测量的是切片上的平均翻转角;这种效应在7T及以上的磁场中尤为明显。引入了一种技术,该技术能在不到10秒的时间内进行容积选择性功率优化,并自动校准用于后续光谱扫描的射频脉冲。使用该技术,通过部分容积Tx/Rx线圈在7名健康志愿者的人小腿中采集了磁共振谱。与使用传统功率校准技术获得的谱相比,在小腿肌肉的不同区域测量到基于未抑制水信号的信噪比提高了22±5%至166±42%。这项新技术能够测量7T时的非均匀射频场,其应用使信噪比显著提高。

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