Kim Jae-Woong, Kim Seong-Gi, Park Sung-Hong
Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology, Daejeon, South Korea.
Center for Neuroscience Imaging Research, Institute for Basic Science (IBS), Suwon, South Korea.
NMR Biomed. 2017 Jun;30(6). doi: 10.1002/nbm.3699. Epub 2017 Feb 10.
While phase imaging with a gradient echo (GRE) sequence is popular, phase imaging with balanced steady-state free precession (bSSFP) has been underexplored. The purpose of this study was to investigate anatomical and functional phase imaging with multiple phase-cycled bSSFP, in expectation of increasing spatial coverage of steep phase-change regions of bSSFP. Eight different dynamic 2D pass-band bSSFP studies at four phase-cycling (PC) angles and two T /T values were performed on rat brains at 9.4 T with electrical forepaw stimulation, in comparison with dynamic 2D GRE. Anatomical and functional phase images were obtained by averaging the dynamic phase images and mapping correlation between the dynamic images and the stimulation paradigm, and were compared with their corresponding magnitude images. Phase imaging with 3D pass-band and 3D transition-band bSSFP was also performed for comparison with 3D GRE phase imaging. Two strategies of combining the multiple phase-cycled bSSFP phase images were also proposed. Contrast between white matter and gray matter in bSSFP phase images significantly varied with PC angle and became twice as high as that of GRE phase images at a specific PC angle. With the same total scan time, the combined bSSFP phase images provided stronger phase contrast and visualized neuronal fiber-like structures more clearly than the GRE phase images. The combined phase images of both 3D pass-band and 3D transition-band bSSFP showed phase contrasts stronger than those of the GRE phase images in overall brain regions, even at a longer T of 20 ms. In contrast, phase functional MRI (fMRI) signals were weak overall and mostly located in draining veins for both bSSFP and GRE. Multiple phase-cycled bSSFP phase imaging is a promising anatomical imaging technique, while its usage as fMRI does not seem desirable with the current approach.
虽然使用梯度回波(GRE)序列的相位成像很流行,但使用平衡稳态自由进动(bSSFP)的相位成像却尚未得到充分探索。本研究的目的是研究使用多相位循环bSSFP的解剖学和功能相位成像,期望增加bSSFP陡峭相位变化区域的空间覆盖范围。在9.4T下,对大鼠大脑进行电刺激前爪的实验,与动态二维GRE相比,进行了四个相位循环(PC)角度和两个T/T值的八个不同的动态二维通带bSSFP研究。通过平均动态相位图像并绘制动态图像与刺激范式之间的相关性来获得解剖学和功能相位图像,并将其与相应的幅度图像进行比较。还进行了三维通带和三维过渡带bSSFP的相位成像,以与三维GRE相位成像进行比较。还提出了两种组合多相位循环bSSFP相位图像的策略。bSSFP相位图像中白质和灰质之间的对比度随PC角度显著变化,在特定PC角度下比GRE相位图像高出两倍。在相同的总扫描时间下,组合的bSSFP相位图像比GRE相位图像提供更强的相位对比度,并且更清晰地显示神经元纤维样结构。即使在20ms的较长T值下,三维通带和三维过渡带bSSFP的组合相位图像在整个脑区显示出比GRE相位图像更强的相位对比度。相比之下,bSSFP和GRE的相位功能磁共振成像(fMRI)信号总体较弱,且大多位于引流静脉中。多相位循环bSSFP相位成像是一种很有前途的解剖成像技术,而目前的方法似乎不太适合将其用作fMRI。