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Toward reliable characterization of functional homogeneity in the human brain: Preprocessing scan duration imaging resolution and computational space

机译:朝着人脑中功能均匀性的可靠表征:预处理扫描持续时间成像分辨率和计算空间

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摘要

While researchers have extensively characterized functional connectivity between brain regions, the characterization of functional homogeneity within a region of the brain connectome is in early stages of development. Several functional homogeneity measures were proposed previously, among which regional homogeneity (ReHo) was most widely used as a measure to characterize functional homogeneity of resting state fMRI (R-fMRI) signals within a small region (). Despite a burgeoning literature on ReHo in the field of neuroimaging brain disorders, its test–retest (TRT) reliability remains unestablished. Using two sets of public R-fMRI TRT data, we systematically evaluated the ReHo’s TRT reliability and further investigated the various factors influencing its reliability and found: 1) nuisance (head motion, white matter, and cerebrospinal fluid) correction of R-fMRI time series can significantly improve the TRT reliability of ReHo while additional removal of global brain signal reduces its reliability, 2) spatial smoothing of R-fMRI time series artificially enhances ReHo intensity and influences its reliability, 3) surface-based R-fMRI computation largely improves the TRT reliability of ReHo, 4) a scan duration of 5 min can achieve reliable estimates of ReHo, and 5) fast sampling rates of R-fMRI dramatically increase the reliability of ReHo. Inspired by these findings and seeking a highly reliable approach to exploratory analysis of the human functional connectome, we established an R-fMRI pipeline to conduct ReHo computations in both 3-dimensions (volume) and 2-dimensions (surface).
机译:尽管研究人员已经广泛描述了大脑区域之间的功能连接性,但大脑连接组区域内功能同质性的表征仍处于开发的早期阶段。先前提出了几种功能均匀性测量,其中区域均匀性(ReHo)最广泛地用作表征小区域内静息状态fMRI(R-fMRI)信号的功能均匀性的一种测量。尽管在神经影像脑疾病领域有关ReHo的文献越来越多,但其重测(TRT)的可靠性仍未确立。我们使用两组公开的R-fMRI TRT数据,系统地评估了ReHo的TRT可靠性,并进一步研究了影响其可靠性的各种因素,发现:1)烦扰(头部运动,白质和脑脊液)校正R-fMRI时间系列可以显着提高ReHo的TRT可靠性,而另外去除全局脑信号会降低其可靠性; 2)R-fMRI时间序列的空间平滑度人为地提高了ReHo强度并影响其可靠性; 3)基于表面的R-fMRI计算大大提高了ReHo的TRT可靠性; 4)5分钟的扫描持续时间可以获得ReHo的可靠估计值; 5)R-fMRI的快速采样率大大提高了ReHo的可靠性。受到这些发现的启发,并寻求一种高度可靠的人类功能连接体探索性分析方法,我们建立了R-fMRI管道,以进行3维(体积)和2维(表面)的ReHo计算。

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