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An improved approach to detection of amplitude of low-frequency fluctuation (ALFF) for resting-state fMRI: Fractional ALFF

静息状态功能磁共振成像 楔前 功能磁共振成像 后扣带 默认模式网络 大脑活动与冥想 神经科学 功能连接 前额叶皮质 顶叶下小叶 心理学 脑电图 认知
作者
Qihong Zou,Chaozhe Zhu,Ying Yang,Xi‐Nian Zuo,Xiangyu Long,Qingjiu Cao,Yufeng Wang,Yu‐Feng Zang
出处
期刊:Journal of Neuroscience Methods [Elsevier]
卷期号:172 (1): 137-141 被引量:1695
标识
DOI:10.1016/j.jneumeth.2008.04.012
摘要

Most of the resting-state functional magnetic resonance imaging (fMRI) studies demonstrated the correlations between spatially distinct brain areas from the perspective of functional connectivity or functional integration. The functional connectivity approaches do not directly provide information of the amplitude of brain activity of each brain region within a network. Alternatively, an index named amplitude of low-frequency fluctuation (ALFF) of the resting-state fMRI signal has been suggested to reflect the intensity of regional spontaneous brain activity. However, it has been indicated that the ALFF is also sensitive to the physiological noise. The current study proposed a fractional ALFF (fALFF) approach, i.e., the ratio of power spectrum of low-frequency (0.01–0.08 Hz) to that of the entire frequency range and this approach was tested in two groups of resting-state fMRI data. The results showed that the brain areas within the default mode network including posterior cingulate cortex, precuneus, medial prefrontal cortex and bilateral inferior parietal lobule had significantly higher fALFF than the other brain areas. This pattern was consistent with previous neuroimaging results. The non-specific signal components in the cistern areas in resting-state fMRI were significantly suppressed, indicating that the fALFF approach improved the sensitivity and specificity in detecting spontaneous brain activities. Its mechanism and sensitivity to abnormal brain activity should be evaluated in the future studies.
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