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Partial correlation mapping of brain functional connectivity with resting state fMRI

机译:休息状态FMRI脑功能连通性的部分相关映射

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The methods to detect resting state functional connectivity presented so far mainly focus on Pearson correlation analysis which calculates Pearson Product Moment correlation coefficient between the time series of two distinct voxels or regions to measure the functional dependency between them. Due to artifacts and noises in the data, functional connectivity maps resulting from the Pearson correlation analysis may risk arising from the correlation of interfering signals other than the neural sources. In the paper, partial correlation analysis is proposed to map resting state functional connectivity. By eliminating of the contributions of interfering signals to pairwise correlations between different voxels or regions, partial correlation analysis allows us to measure the real functional connectivity induced by neural activity. Experiments with real fMRI data, demonstrate that mapping functional connectivity with partial correlation analysis leads to disappearance of a considerable part of the functional connectivity networks relative to that from Pearson correlation analysis and showing small, but consistent networks. The results indicate that partial correlation analysis could perform a better mapping of brain functional connectivity than Pearson correlation analysis.
机译:检测到迄今为止呈现休息状态功能连接的方法主要关注Pearson相关分析,其计算两个不同体素或区域的时间序列之间的Pearson产品时刻相关系数,以测量它们之间的功能依赖性。由于数据中的伪影和噪声,由Pearson相关分析产生的功能性连接图可能导致来自神经源之外的干扰信号的相关性引起的风险。本文提出了局部相关分析来映射静止状态功能连接。通过消除干扰信号在不同体素或区域之间的成对相关性的贡献,部分相关性分析允许我们测量神经活动诱导的真实功能连接。具有真实FMRI数据的实验,证明了与部分相关性分析的映射功能连接导致相对于来自Pearson相关性分析和显示小但一致的网络的功能连接网络的相当大部分的消失。结果表明,部分相关性分析可以比Pearson相关分析更好地执行脑功能连通性的更好映射。

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