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在参数化正中神经刺激期间,同步功能近红外光谱-脑磁图和同步功能近红外光谱-功能磁共振成像的组水平源定位活动比较。

Comparison of group-level, source localized activity for simultaneous functional near-infrared spectroscopy-magnetoencephalography and simultaneous fNIRS-fMRI during parametric median nerve stimulation.

作者信息

Huppert Theodore, Barker Jeff, Schmidt Benjamin, Walls Shawn, Ghuman Avniel

机构信息

University of Pittsburgh, Department of Radiology, Room B804, 200 Lothrop Street, Pittsburgh, Pennsylvania 15213, United States; University of Pittsburgh, Department of Bioengineering, Room B804, 200 Lothrop Street, Pittsburgh, Pennsylvania 15213, United States.

University of Pittsburgh , Department of Bioengineering, Room B804, 200 Lothrop Street, Pittsburgh, Pennsylvania 15213, United States.

出版信息

Neurophotonics. 2017 Jan;4(1):015001. doi: 10.1117/1.NPh.4.1.015001. Epub 2017 Jan 20.

Abstract

Functional near-infrared spectroscopy (fNIRS) is a noninvasive neuroimaging technique, which uses light to measure changes in cerebral blood oxygenation through sensors placed on the surface of the scalp. We recorded concurrent fNIRS with magnetoencephalography (MEG) and functional magnetic resonance imaging (fMRI) in order to investigate the group-level correspondence of these measures with source-localized fNIRS estimates. Healthy participants took part in both a concurrent fNIRS-MEG and fNIRS-fMRI neuroimaging session during two somatosensory stimulation tasks, a blocked design median nerve localizer and parametric pulsed-pair median nerve stimulation using interpulse intervals from 100 to 500 ms. We found the spatial correlation for estimated activation patterns from the somatosensory task was [Formula: see text], 0.57, and [Formula: see text] and the amplitude correlation was [Formula: see text], 0.52, and [Formula: see text] for fMRI-MEG, fMRI-fNIRS oxy-hemoglobin, and fMRI-fNIRS deoxy-hemoglobin signals, respectively. Taken together, these results show good correspondence among the fMRI, fNIRS, and MEG with the great majority of the difference across modalities being driven by lower sensitivity for deeper brain sources in MEG and fNIRS. These results provide an important validation of source-localized fNIRS in the context of concurrent multimodal imaging for future studies of the relationship between physiological effects in the human brain.

摘要

功能近红外光谱技术(fNIRS)是一种非侵入性神经成像技术,它利用光通过放置在头皮表面的传感器来测量脑血氧合的变化。我们同时记录了功能近红外光谱技术(fNIRS)与脑磁图(MEG)以及功能磁共振成像(fMRI),以研究这些测量与源定位功能近红外光谱技术(fNIRS)估计值之间的组水平对应关系。健康参与者在两项体感刺激任务期间参加了功能近红外光谱技术(fNIRS)与脑磁图(MEG)以及功能近红外光谱技术(fNIRS)与功能磁共振成像(fMRI)的同步神经成像实验,这两项任务分别是一个组块设计的正中神经定位任务以及使用100至500毫秒的脉冲间隔进行的参数化脉冲对正中神经刺激。我们发现,对于体感任务估计激活模式,功能磁共振成像(fMRI)与脑磁图(MEG)、功能磁共振成像(fMRI)与功能近红外光谱技术(fNIRS)氧合血红蛋白以及功能磁共振成像(fMRI)与功能近红外光谱技术(fNIRS)脱氧血红蛋白信号的空间相关性分别为[公式:见正文]、0.57和[公式:见正文],幅度相关性分别为[公式:见正文]、0.52和[公式:见正文]。综合来看,这些结果表明功能磁共振成像(fMRI)、功能近红外光谱技术(fNIRS)和脑磁图(MEG)之间具有良好的对应关系,跨模态的绝大多数差异是由脑磁图(MEG)和功能近红外光谱技术(fNIRS)对更深层脑源的较低敏感性所驱动的。这些结果为源定位功能近红外光谱技术(fNIRS)在同步多模态成像背景下的应用提供了重要验证,有助于未来对人类大脑生理效应之间关系的研究。

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