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静息态网络的近红外光谱功能磁共振成像研究。

A NIRS-fMRI study of resting state network.

机构信息

Graduate School of Education, The University of Tokyo, Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

Neuroimage. 2012 Oct 15;63(1):179-93. doi: 10.1016/j.neuroimage.2012.06.011. Epub 2012 Jun 17.

DOI:10.1016/j.neuroimage.2012.06.011
PMID:22713670
Abstract

Resting state functional connectivity, which is defined as temporal correlation of spontaneous activity between diverse brain regions, has been reported to form resting state networks (RSNs), consisting of a specific set of brain regions, based on functional magnetic resonance imaging (fMRI). Recently, studies using near-infrared spectroscopy (NIRS) reported that NIRS signals also show temporal correlation between different brain regions. The local relationship between NIRS and fMRI signals has been examined by simultaneously recording these signals when participants perform tasks or respond to stimuli. However, the NIRS-fMRI signal relationship during the resting state has been reported only between NIRS signals obtained within limited regions and whole brain fMRI signals. Therefore, it remains unclear whether NIRS signals obtained at diverse regions correlate with regional fMRI signals close to the NIRS measurement channels, especially in relation to the RSNs. In this study, we tested whether the signals measured by these different modalities during the resting state have the consistent characteristics of the RSNs. Specifically, NIRS signals during the resting state were acquired over the frontal, temporal, and occipital cortices while whole brain fMRI data was simultaneously recorded. First, by projecting the NIRS channel positions over the cerebral cortical surface, we identified the most likely anatomical locations of all NIRS channels used in the study. Next, to investigate the regional signal relationship between NIRS and fMRI, we calculated the cross-correlation between NIRS signals and fMRI signals in the brain regions adjacent to each NIRS channel. For each NIRS channel, we observed the local maxima of correlation coefficients between NIRS and fMRI signals within a radius of 2 voxels from the projection point. Furthermore, we also found that highly correlated voxels with the NIRS signal were mainly localized within brain tissues for all NIRS channels, with the exception of 2 frontal channels. Finally, by calculating the correlation between NIRS signals at a channel and whole brain fMRI signals, we observed that NIRS signals correlate with fMRI signals not only within brain regions adjacent to NIRS channels but also within distant brain regions constituting RSNs, such as the dorsal attention, fronto-parietal control, and default mode networks. These results support the idea that NIRS signals obtained at several cortical regions during the resting state mainly reflect regional spontaneous hemodynamic fluctuations that originate from spontaneous cortical activity, and include information that characterizes the RSNs. Because NIRS is relatively easy to use and a less physically demanding neuroimaging technique, our findings should facilitate a broad application of this technique to examine RSNs, especially for clinical populations and conditions unsuitable for fMRI.

摘要

静息态功能连接是指不同脑区之间自发性活动的时间相关性,它已被报道可以形成静息态网络(RSN),这些网络由一组特定的脑区组成,其依据是功能磁共振成像(fMRI)。最近,使用近红外光谱(NIRS)的研究报告称,NIRS 信号也显示出不同脑区之间的时间相关性。当参与者执行任务或对刺激做出反应时,同时记录这些信号,以检验 NIRS 与 fMRI 信号之间的局部关系。然而,只有在有限区域内获得的 NIRS 信号与全脑 fMRI 信号之间,以及在有限区域内获得的 NIRS 信号与全脑 fMRI 信号之间,才报告了静息状态下 NIRS-fMRI 信号的关系。因此,在不同区域获得的 NIRS 信号是否与靠近 NIRS 测量通道的区域 fMRI 信号相关,特别是与 RSN 相关,尚不清楚。在这项研究中,我们测试了静息状态下这些不同模式的信号是否具有 RSN 的一致特征。具体来说,在静息状态下,我们在额、颞和枕叶上采集 NIRS 信号,同时记录全脑 fMRI 数据。首先,通过将 NIRS 通道位置投影到大脑皮质表面,我们确定了研究中使用的所有 NIRS 通道最可能的解剖位置。接下来,为了研究 NIRS 和 fMRI 之间的区域信号关系,我们计算了与每个 NIRS 通道相邻的脑区的 NIRS 信号和 fMRI 信号之间的互相关。对于每个 NIRS 通道,我们在距投影点 2 个体素的半径内观察到 NIRS 和 fMRI 信号之间相关系数的局部最大值。此外,我们还发现,对于所有的 NIRS 通道,与 NIRS 信号高度相关的体素主要定位于脑组织内,只有 2 个额部通道除外。最后,通过计算通道 NIRS 信号与全脑 fMRI 信号之间的相关性,我们观察到 NIRS 信号不仅与 NIRS 通道相邻的脑区的 fMRI 信号相关,而且与构成 RSN 的远距离脑区的 fMRI 信号相关,如背侧注意、额顶控制和默认模式网络。这些结果支持这样一种观点,即在静息状态下从几个皮质区域获得的 NIRS 信号主要反映源自自发皮质活动的区域自发性血液动力学波动,并包含表征 RSN 的信息。由于 NIRS 相对容易使用,并且是一种对身体要求较低的神经影像学技术,因此我们的研究结果应该有助于更广泛地应用该技术来检查 RSN,特别是对于不适合 fMRI 的临床人群和条件。

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