Harada Taisuke, Kudo Kohsuke, Uwano Ikuko, Yamashita Fumio, Kameda Hiroyuki, Matsuda Tsuyoshi, Sasaki Makoto, Shirato Hiroki
Department of Radiation Medicine, Hokkaido University Graduate School of Medicine.
Magn Reson Med Sci. 2017 Jan 10;16(1):23-31. doi: 10.2463/mrms.mp.2015-0137. Epub 2016 Mar 21.
The B0 and B1+ maps required for calculation of the radiofrequency (RF) pulse of parallel transmission (pTx) are obtained in calibration scans; however, they may be affected by respiratory motion. We aimed to compare the reproducibility of B0 and B1+ maps and gradient echo (GRE) images of the brain scanned with pTx at 7T between free-breathing (FB) and breath-holding (BH) conditions during the calibration scan.
Nine healthy volunteers were scanned by 7T MRI using a two-channel quadrature head coil. In the pTx calibration scans performed with FB and BH, the B0 map was obtained from two different TE images and the B1+ map was calculated by the Bloch-Siegert method. A GRE image (gradient-recalled-acquisition in steady state) was also obtained with RF shimming and RF design of pTx with spoke method, as well as quadrature transmission (qTx). All the scans were repeated over five sessions. The reproducibility of the B0 and B1+ maps and GRE image was evaluated with region-of-interest measurements using inter-session standard deviation (SD) and coefficient of variation (CV) values. Intensity homogeneity of GRE images was also assessed with in-plane CV.
Inter-session SDs of B0 and B1+ maps were significantly smaller in BH (P < 0.01). Inter-session CVs of GRE images were significantly smaller in qTx than BH and FB (P < 0.01, both); however, the CVs of BH were significantly smaller (P < 0.01). In-plane CVs of FB and BH with RF shimming were not significantly different with qTx; however, CVs of FB and BH with RF design were significantly smaller than those of qTx (P < 0.05 and P < 0.01, respectively).
BH could improve the reproducibility of B0 and B1+ maps in pTx calibration scans and GRE images. These results might facilitate the development of pTx in human brain at 7T.
用于计算并行传输(pTx)射频(RF)脉冲所需的B0和B1 +图谱在校准扫描中获取;然而,它们可能会受到呼吸运动的影响。我们旨在比较在校准扫描期间,自由呼吸(FB)和屏气(BH)条件下,7T场强采用pTx扫描时大脑B0和B1 +图谱以及梯度回波(GRE)图像的可重复性。
九名健康志愿者使用两通道正交头部线圈进行7T磁共振成像扫描。在FB和BH条件下进行的pTx校准扫描中,B0图谱从两个不同的回波时间(TE)图像中获得,B1 +图谱通过布洛赫-西格特方法计算得出。还采用射频匀场和辐条法的pTx射频设计以及正交传输(qTx)获得了GRE图像(稳态梯度回波采集)。所有扫描均重复进行五次。使用会话间标准差(SD)和变异系数(CV)值通过感兴趣区测量来评估B0和B1 +图谱以及GRE图像的可重复性。还使用面内CV评估GRE图像的强度均匀性。
BH条件下B0和B1 +图谱的会话间SD显著更小(P < 0.01)。qTx条件下GRE图像的会话间CV显著小于BH和FB条件下的(P均 < 0.01);然而,BH条件下的CV显著更小(P < 0.01)。采用射频匀场的FB和BH条件下的面内CV与qTx条件下的无显著差异;然而,采用射频设计的FB和BH条件下的CV显著小于qTx条件下的(分别为P < 0.05和P < 0.01)。
屏气可提高pTx校准扫描中B0和B1 +图谱以及GRE图像的可重复性。这些结果可能有助于7T场强下人脑pTx技术的发展。