Chen Zikuan, Calhoun Vince D
The Mind Research Network, Albuquerque, NM.
Concepts Magn Reson Part B Magn Reson Eng. 2010 Aug 1;37B(3):129-145. doi: 10.1002/cmr.b.20164.
High spatial resolution fMRI provides a more precise estimate of brain activity than low resolution fMRI. The magnitude and phase parts of the BOLD signals are impacted differently by changes in the scan resolution. In this paper, we report on a numerical simulation to show the impact of spatial resolution upon the complex-valued BOLD signal in terms of magnitude and phase variation. We generate realistic capillary networks in cortex voxels, calculate the BOLD-induced magnetic field disturbance and the complex BOLD signals for the voxel and its subvoxels, and thereby characterize the magnitude and phase behaviors across multiple grid resolutions. Our results show that: 1) at higher spatial resolution there is greater spatial variation in the phase of the BOLD signal as compared to its magnitude; 2) the spatial variation of the phase signal monotonically increases with respect to spatial resolution while for the magnitude the spatial variation may reach a maximum at some resolution level; 3) voxels containing large capillaries have higher phase spatial variation than those with smaller capillaries; 4) the amplitude spatial variation at a resolution level increases with respect to relaxation time whereas the phase variation is generally unaffected.
高空间分辨率功能磁共振成像(fMRI)比低分辨率fMRI能更精确地估计大脑活动。血氧水平依赖(BOLD)信号的幅度和相位部分受扫描分辨率变化的影响不同。在本文中,我们报告了一项数值模拟,以展示空间分辨率在幅度和相位变化方面对复数值BOLD信号的影响。我们在皮质体素中生成逼真的毛细血管网络,计算体素及其子体素的BOLD诱导磁场干扰和复BOLD信号,从而表征跨多个网格分辨率的幅度和相位行为。我们的结果表明:1)在较高空间分辨率下,与幅度相比,BOLD信号的相位存在更大的空间变化;2)相位信号的空间变化相对于空间分辨率单调增加,而对于幅度,空间变化可能在某个分辨率水平达到最大值;3)包含大毛细血管的体素比包含小毛细血管的体素具有更高的相位空间变化;4)在某个分辨率水平下,幅度空间变化随弛豫时间增加,而相位变化通常不受影响。