Department of Radiology, Washington University School of Medicine, Saint Louis, Missouri 63110, USA.
J Neurophysiol. 2012 Nov;108(9):2363-72. doi: 10.1152/jn.00900.2011. Epub 2012 Aug 8.
We investigated the effects of resting state type on blood oxygen level-dependent (BOLD) signal and functional connectivity in two paradigms: participants either alternated between fixation and eyes closed or maintained fixation or eyes closed throughout each scan. The BOLD signal and functional connectivity of lower and higher tiers of the visual cortical hierarchy were found to be differentially modulated during eyes closed versus fixation. Fixation was associated with greater mean BOLD signals in primary visual cortex and lower mean BOLD signals in extrastriate visual areas than periods of eyes closed. In addition, analysis of thalamocortical functional connectivity during scans in which participants maintained fixation showed synchronized BOLD fluctuations between those thalamic nuclei whose mean BOLD signal was systematically modulated during alternating epochs of eyes closed and fixation, primary visual cortex and the attention network, while during eyes closed negatively correlated fluctuations were seen between the same thalamic nuclei and extrastriate visual areas. Finally, in all visual areas the amplitude of spontaneous BOLD fluctuations was greater during eyes closed than during fixation. The dissociation between early and late tiers of visual cortex, which characterizes both mean and functionally connected components of the BOLD signal, may depend on the reorganization of thalamocortical networks. Since dissociated changes in local blood flow also characterize transitions between different stages of sleep and wakefulness (Braun AR, Balkin TJ, Wesenten NJ, Gwadry F, Carson RE, Varga M, Baldwin P, Belenky G, Herscovitch P. Science 279: 91-95, 1998), our results suggest that dissociated endogenous neural activity in primary and extrastriate cortex may represent a general aspect of brain function.
我们研究了两种范式中静息态类型对血氧水平依赖(BOLD)信号和功能连接的影响:参与者要么在注视和闭眼之间交替,要么在整个扫描过程中保持注视或闭眼。在闭眼与注视时,发现视觉皮层层次结构的较低和较高层次的 BOLD 信号和功能连接存在差异调节。与闭眼期间相比,注视时初级视觉皮层的平均 BOLD 信号更大,而额外视觉区域的平均 BOLD 信号更小。此外,在参与者保持注视的扫描期间分析丘脑皮质功能连接时,显示在那些在闭眼和注视的交替时期系统调节平均 BOLD 信号的丘脑核之间存在同步的 BOLD 波动,初级视觉皮层和注意力网络,而在闭眼期间,同一丘脑核和额外视觉区域之间存在负相关的波动。最后,在所有视觉区域中,闭眼时自发 BOLD 波动的幅度大于注视时。这种早期和晚期视觉皮层之间的分离,其特征是 BOLD 信号的平均值和功能连接组件,可能取决于丘脑皮质网络的重组。由于局部血流的分离变化也特征在于不同睡眠和觉醒阶段之间的过渡(Braun AR,Balkin TJ,Wesenten NJ,Gwadry F,Carson RE,Varga M,Baldwin P,Bel enky G,Herscovitch P。Science 279: 91-95,1998),我们的结果表明,初级和额外视觉皮层中分离的内源性神经活动可能代表大脑功能的一个普遍方面。