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Spin-Echo Resting-State Functional Connectivity in High-Susceptibility Regions: Accuracy Reliability and the Impact of Physiological Noise

机译:高磁敏区中的自旋回波静止状态功能连接:准确性可靠性和生理噪声的影响。

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摘要

Gradient-echo (GE) echo-planar imaging (EPI) is the method of choice in blood-oxygenation level-dependent (BOLD) functional MRI (fMRI) studies, as it demonstrates substantially higher BOLD sensitivity than its spin-echo (SE) counterpart. However, it is also well known that the GE-EPI signal is prone to signal dropouts and shifts due to susceptibility effects near air–tissue interfaces. SE-EPI, in contrast, is minimally affected by these artifacts. In this study, we quantify, for the first time, the sensitivity and specificity of SE and GE EPI for resting-state fMRI functional connectivity (fcMRI) mapping, using the 1000-brain fcMRI atlas () as the pseudoground truth. Moreover, we assess the influence of physiological processes on resting-state BOLD measured using both regular and ultrafast GE and SE acquisitions. Our work demonstrates that SE-EPI and GE-EPI are associated with similar sensitivities, specificities, and intersubject reproducibility in fcMRI for most brain networks, generated using both seed-based analysis and independent component analysis. More importantly, SE-based fcMRI measurements demonstrated significantly higher sensitivity, specificity, and intersubject reproducibility in high-susceptibility regions, spanning the limbic and frontal networks in the 1000-brain atlas. In addition, SE-EPI is significantly less sensitive to prominent sources of physiological noise, including low-frequency respiratory volume and heart rate variations. Our work suggests that SE-EPI should be increasingly adopted in the study of networks spanning susceptibility-affected brain regions, including those that are important to memory, language, and emotion.
机译:梯度回波(GE)回波平面成像(EPI)是血液氧合水平依赖性(BOLD)功能MRI(fMRI)研究中的首选方法,因为它证明了BOLD敏感性比自旋回波(SE)高得多对方。然而,众所周知的是,由于空气-组织界面附近的磁化效应,GE-EPI信号容易出现信号丢失和移位。相反,SE-EPI受这些伪影的影响最小。在这项研究中,我们首次使用1000大脑fcMRI地图集()作为拟真事实,量化了SE和GE EPI对静止状态fMRI功能连接(fcMRI)映射的敏感性和特异性。此外,我们评估了生理过程对使用常规和超快GE和SE采集所测得的静止状态BOLD的影响。我们的工作表明,对于SE-EPI和GE-EPI,使用基于种子的分析和独立的成分分析,对于大多数大脑网络而言,在fcMRI中具有相似的敏感性,特异性和受试者间可重复性。更重要的是,基于SE的fcMRI测量结果显示,在高敏感度区域(跨越1000大脑图谱的边缘和额叶网络)中,灵敏度,特异性和受试者间可重复性显着提高。此外,SE-EPI对生理噪声的主要来源(包括低频呼吸量和心率变化)的敏感性明显降低。我们的工作表明SE-EPI在涉及易感性大脑区域的网络研究中应越来越多地采用SE-EPI,包括对记忆,语言和情感至关重要的区域。

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