A Comparative Study of Correlation Methods in Functional Connectivity Analysis Using fMRI Data of Alzheimer's Patients.

Hessam Ahmadi, Emad Fatemizadeh, Ali Motie-Nasrabadi
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Abstract

Background: Functional Magnetic Resonance Imaging (fMRI) is a non-invasive neuroimaging tool, used in brain function research and is also a low-frequency signal, showing brain activation by means of Oxygen consumption.

Objective: One of the reliable methods in brain functional connectivity analysis is the correlation method. In correlation analysis, the relationship between two time-series has been investigated. In fMRI analysis, the Pearson correlation is used while there are other methods. This study aims to investigate the different correlation methods in functional connectivity analysis.

Material and methods: In this analytical research, based on fMRI signals of Alzheimer's Disease (AD) and healthy individuals from the ADNI database, brain functional networks were generated using correlation techniques, including Pearson, Kendall, and Spearman. Then, the global and nodal measures were calculated in the whole brain and in the most important resting-state network called Default Mode Network (DMN). The statistical analysis was performed using non-parametric permutation test.

Results: Results show that although in nodal analysis, the performance of correlation methods was almost similar, in global features, the Spearman and Kendall were better in distinguishing AD subjects. Note that, nodal analysis reveals that the functional connectivity of the posterior areas in the brain was more damaged because of AD in comparison to frontal areas. Moreover, the functional connectivity of the dominant hemisphere was disrupted more.

Conclusion: Although the Pearson method has limitations in capturing non-linear relationships, it is the most prevalent method. To have a comprehensive analysis, investigating non-linear methods such as distance correlation is recommended.

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利用阿尔茨海默病患者的 fMRI 数据进行功能连接性分析的相关方法比较研究
背景:功能磁共振成像(fMRI)是一种无创神经成像工具,用于脑功能研究,也是一种低频信号,通过耗氧量显示大脑激活情况:相关分析法是大脑功能连接分析的可靠方法之一。在相关分析中,研究的是两个时间序列之间的关系。在 fMRI 分析中,使用的是皮尔逊相关法,但也有其他方法。本研究旨在探讨功能连接分析中的不同相关方法:在这项分析研究中,基于 ADNI 数据库中阿尔茨海默病(AD)和健康人的 fMRI 信号,使用相关技术(包括 Pearson、Kendall 和 Spearman)生成大脑功能网络。然后,计算全脑和最重要的静息态网络--默认模式网络(DMN)--的全局和节点测量值。统计分析采用非参数置换检验:结果表明,虽然在节点分析中,相关方法的表现几乎相似,但在全局特征中,斯皮尔曼和肯德尔在区分AD受试者方面更胜一筹。值得注意的是,节点分析显示,与额叶区域相比,大脑后部区域的功能连通性因 AD 而受到了更大的损害。此外,优势半球的功能连通性受到的破坏更大:结论:虽然皮尔逊法在捕捉非线性关系方面存在局限性,但它是最常用的方法。为了进行全面分析,建议研究非线性方法,如距离相关法。
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来源期刊
Journal of Biomedical Physics and Engineering
Journal of Biomedical Physics and Engineering Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
2.90
自引率
0.00%
发文量
64
审稿时长
10 weeks
期刊介绍: The Journal of Biomedical Physics and Engineering (JBPE) is a bimonthly peer-reviewed English-language journal that publishes high-quality basic sciences and clinical research (experimental or theoretical) broadly concerned with the relationship of physics to medicine and engineering.
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