Multifractal long-range dependence pattern of functional magnetic resonance imaging in the human brain at rest

Author:

Guan Sihai12,Jiang Runzhou34,Chen Donna Y5,Michael Andrew6,Meng Chun3,Biswal Bharat35

Affiliation:

1. Southwest Minzu University College of Electronic and Information, , Chengdu 610041 , China

2. State Ethnic Affairs Commission Key Laboratory of Electronic and Information Engineering, , Chengdu 610041 , China

3. University of Electronic Science and Technology of China School of Life Science and Technology, , Chengdu 611731 , China

4. Xiangyang No.1 People's Hospital Medical Equipment Department, , Xiangyang 441000 , China

5. New Jersey Institute of Technology Department of Biomedical Engineering, , Newark, NJ 07102 , United States

6. Duke University Duke Institute for Brain Sciences, , Durham, NC 27708 , United States

Abstract

Abstract Long-range dependence is a prevalent phenomenon in various biological systems that characterizes the long-memory effect of temporal fluctuations. While recent research suggests that functional magnetic resonance imaging signal has fractal property, it remains unknown about the multifractal long-range dependence pattern of resting-state functional magnetic resonance imaging signals. The current study adopted the multifractal detrended fluctuation analysis on highly sampled resting-state functional magnetic resonance imaging scans to investigate long-range dependence profile associated with the whole-brain voxels as specific functional networks. Our findings revealed the long-range dependence’s multifractal properties. Moreover, long-term persistent fluctuations are found for all stations with stronger persistency in whole-brain regions. Subsets with large fluctuations contribute more to the multifractal spectrum in the whole brain. Additionally, we found that the preprocessing with band-pass filtering provided significantly higher reliability for estimating long-range dependence. Our validation analysis confirmed that the optimal pipeline of long-range dependence analysis should include band-pass filtering and removal of daily temporal dependence. Furthermore, multifractal long-range dependence characteristics in healthy control and schizophrenia are different significantly. This work has provided an analytical pipeline for the multifractal long-range dependence in the resting-state functional magnetic resonance imaging signal. The findings suggest differential long-memory effects in the intrinsic functional networks, which may offer a neural marker finding for understanding brain function and pathology.

Funder

Introduction of Talent, Southwest Minzu University

Fundamental Research Funds for the Central Universities, Southwest Minzu University

Key Research and Development Program of Guangxi

Sichuan Science and Technology Program

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

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