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Effect of scanner acoustic background noise on strictresting-state fMRI

机译:扫描仪声学背景噪声对严格的影响静息功能磁共振成像

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摘要

Functional MRI (fMRI) resting-state experiments are aimed at identifying brain networks that support basal brain function. Although most investigators consider a ‘resting-state’ fMRI experiment with no specific external stimulation, subjects are unavoidably under heavy acoustic noise produced by the equipment. In the present study, we evaluated the influence of auditory input on the resting-state networks (RSNs). Twenty-two healthy subjects were scanned using two similar echo-planar imaging sequences in the same 3T MRI scanner: a default pulse sequence and a reduced “silent” pulse sequence. Experimental sessions consisted of two consecutive 7-min runs with noise conditions (default or silent) counterbalanced across subjects. A self-organizing group independent component analysis was applied to fMRI data in order to recognize the RSNs. The insula, left middle frontal gyrus and right precentral and left inferior parietal lobules showed significant differences in the voxel-wise comparison between RSNs depending on noise condition. In the presence of low-level noise, these areas Granger-cause oscillations in RSNs with cognitive implications (dorsal attention and entorhinal), while during high noise acquisition, these connectivities are reduced or inverted. Applying low noise MR acquisitions inresearch may allow the detection of subtle differences of the RSNs, withimplications in experimental planning for resting-state studies, data analysis,and ergonomic factors.
机译:功能性MRI(fMRI)静止状态实验旨在确定支持基础脑功能的脑网络。尽管大多数研究人员认为没有特定外部刺激的“静止状态” fMRI实验,但受试者不可避免地会受到设备产生的沉重声响的影响。在本研究中,我们评估了听觉输入对静止状态网络(RSN)的影响。在同一台3T MRI扫描仪中,使用两个相似的回波平面成像序列扫描了22位健康受试者:默认脉冲序列和减少的“沉默”脉冲序列。实验部分包括连续两个7分钟的跑步,其中噪音条件(默认或静音)在各个对象之间保持平衡。自组织独立组独立成分分析应用于功能磁共振成像数据,以识别RSNs。岛突,左中额中回,右中上和左下顶小叶显示,根据噪声情况,RSN之间的体素方向比较显示出显着差异。在存在低级噪声的情况下,这些区域会在RSN中产生Granger振荡,并产生认知影响(背侧注意和内嗅),而在获得高噪声的过程中,这些连通性会降低或反转。将低噪声MR采集应用于研究可能会发现RSN的细微差异,对静止状态研究,数据分析的实验计划的意义,和人体工程学因素。

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