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Resting state inter and intra hemispheric human brain functional connectivity

机译:大脑半球和大脑半球之间的静止状态

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Resting-state functional connectivity between neuroanatomical regions has attracted significant attention in recent years. In the process of obtaining the resting-state functional connectivity map of the human brain from blood-oxygen-level-dependent fMRI signals, it is common to average the signals from left and right hemispheres. This averaging can introduce unappreciated complexities and unintended consequences not related to the research question of interest. In this paper, we mathematically demonstrate that measures of functional connectivity obtained by averaging homologous regions from the both hemispheres become undesirably dependent on four inter-hemispheric connectivity measures. We explore this finding in real-world fMRI data from 25 healthy young participants. We show that inter-hemispheric averaging has a mixed effect on the results and may introduce correlation artifacts to the connectivity map. Furthermore, we show mathematically and demonstrate with Monte Carlo simulations of null data that inter-hemispheric averaging will not alter human brain connectivity map at rest only and if only there are no inter-hemispheric correlations.
机译:近年来,神经解剖区域之间的静止状态功能连接引起了极大的关注。在从依赖血氧水平的fMRI信号获得人脑的静止状态功能连接图的过程中,通常对来自左右半球的信号求平均值。这种平均会引入与感兴趣的研究问题无关的复杂程度和意想不到的后果。在本文中,我们从数学上证明,通过平均两个半球的同源区域获得的功能连通性度量变得不合需要地依赖于四个半球间连通性度量。我们在来自25位健康年轻参与者的真实fMRI数据中探索了这一发现。我们表明,半球间平均对结果有混合的影响,并且可能将相关的伪影引入连接图。此外,我们用数学方法显示并通过蒙特卡罗模拟的空数据来证明,半球间平均只会在静止时且如果不存在半球间相关性时,不会改变人脑的连通性图。

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