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首页> 外文期刊>NeuroImage >Detection of resting state functional connectivity using partial correlation analysis: A study using multi-distance and whole-head probe near-infrared spectroscopy
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Detection of resting state functional connectivity using partial correlation analysis: A study using multi-distance and whole-head probe near-infrared spectroscopy

机译:使用部分相关性分析检测静态功能连接:使用多距离和全头探头近红外光谱的研究

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摘要

Multichannel near-infrared spectroscopy (NIRS) is a functional neuroimaging modality that enables easy-to-use and noninvasive measurement of changes in blood oxygenation levels. We developed a clinically-applicable method for estimating resting state functional connectivity (RSFC) with NIRS using a partial correlation analysis to reduce the influence of extraneural components. Using a multi-distance probe arrangement NIRS, we measured resting state brain activity for 8 min in 17 healthy participants. Independent component analysis was used to extract shallow and deep signals from the original NIRS data. Pearson's correlation calculated from original signals was significantly higher than that calculated from deep signals, while partial correlation calculated from original signals was comparable to that calculated from deep (cerebral-tissue) signals alone. To further test the validity of our method, we also measured 8 min of resting state brain activity using a whole-head NIRS arrangement consisting of 17 cortical regions in 80 healthy participants. Significant RSFC between neighboring, interhemispheric homologous, and some distant ipsilateral brain region pairswas revealed. Additionally, females exhibited higher RSFC between interhemispheric occipital region-pairs, in addition to higher connectivity between some ipsilateral pairs in the left hemisphere, when compared to males. The combined results of the two component experiments indicate that partial correlation analysis is effective in reducing the influence of extracerebral signals, and that NIRS is able to detectwell-described resting state networks and sex-related differences in RSFC. (C) 2016 Elsevier Inc. All rights reserved.
机译:多通道近红外光谱(NIRS)是一种功能性神经影像模型,可以易于使用和非血液氧合水平的变化测量。我们开发了一种临床适用的方法,用于使用部分相关性分析来估计静态功能连接(RSFC),以减少外膜组分的影响。使用多距离探针排列内网,我们在17名健康参与者中测量静态状态大脑活动8分钟。独立分量分析用于从原始网德数据中提取浅和深的信号。 Pearson从原始信号计算的相关性显着高于来自深度信号计算的相关性,而根据原始信号计算的部分相关性与单独的深(脑组织)信号计算的相当。为了进一步测试我们的方法的有效性,我们还使用由80名健康参与者的17个皮质地区组成的全头立内壁区域测量了8分钟的休息状态大脑活动。邻近,卵闭同源和一些遥远的同侧脑区Pailswas之间显着的RSFC。另外,女性在卵闭枕骨对之间表现出更高的RSFC,除了左半球的一些同侧对之间的较高连接,与雄性相比。两个组分实验的组合结果表明,部分相关性分析有效地降低了额外信号的影响,并且德内尔斯能够检测到RSFC中的休息状态网络和性关系差异。 (c)2016 Elsevier Inc.保留所有权利。

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