Song Xiaopeng, Zhou Shuqin, Zhang Yi, Liu Yijun, Zhu Huaiqiu, Gao Jia-Hong
Department of Biomedical Engineering, College of Engineering, Peking University, Beijing, 100871, China.
School of Life Science and Technology, Xidian University, Xi'an, Shanxi 710071, China.
PLoS One. 2015 Nov 6;10(11):e0141507. doi: 10.1371/journal.pone.0141507. eCollection 2015.
The eyes-open (EO) and eyes-closed (EC) states have differential effects on BOLD-fMRI signal dynamics, affecting both the BOLD oscillation frequency of a single voxel and the regional homogeneity (ReHo) of several neighboring voxels. To explore how the two resting-states modulate the local synchrony through different frequency bands, we decomposed the time series of each voxel into several components that fell into distinct frequency bands. The ReHo in each of the bands was calculated and compared between the EO and EC conditions. The cross-voxel correlations between the mean frequency and the overall ReHo of each voxel's original BOLD series in different brain areas were also calculated and compared between the two states. Compared with the EC state, ReHo decreased with EO in a wide frequency band of 0.01-0.25 Hz in the bilateral thalamus, sensorimotor network, and superior temporal gyrus, while ReHo increased significantly in the band of 0-0.01 Hz in the primary visual cortex, and in a higher frequency band of 0.02-0.1 Hz in the higher order visual areas. The cross-voxel correlations between the frequency and overall ReHo were negative in all the brain areas but varied from region to region. These correlations were stronger with EO in the visual network and the default mode network. Our results suggested that different frequency bands of ReHo showed different sensitivity to the modulation of EO-EC states. The better spatial consistency between the frequency and overall ReHo maps indicated that the brain might adopt a stricter frequency-dependent configuration with EO than with EC.
睁眼(EO)和闭眼(EC)状态对血氧水平依赖性功能磁共振成像(BOLD-fMRI)信号动力学有不同影响,既影响单个体素的BOLD振荡频率,也影响几个相邻体素的区域同质性(ReHo)。为了探究这两种静息状态如何通过不同频段调节局部同步性,我们将每个体素的时间序列分解为几个属于不同频段的成分。计算并比较了EO和EC条件下各频段的ReHo。还计算并比较了不同脑区中每个体素原始BOLD序列的平均频率与整体ReHo之间的体素间相关性。与EC状态相比,在双侧丘脑、感觉运动网络和颞上回中,0.01 - 0.25 Hz的宽频段内,EO状态下ReHo降低;而在初级视觉皮层中,0 - 0.01 Hz频段内ReHo显著增加,在高级视觉区域中,0.02 - 0.1 Hz的较高频段内ReHo增加。在所有脑区中,频率与整体ReHo之间的体素间相关性均为负,但因区域而异。在视觉网络和默认模式网络中,这些相关性在EO状态下更强。我们的结果表明,ReHo的不同频段对EO - EC状态的调制表现出不同的敏感性。频率图与整体ReHo图之间更好的空间一致性表明,与EC状态相比,大脑在EO状态下可能采用更严格的频率依赖性配置。