A Framework for Exploring Non-Linear Functional Connectivity and Causality in the Human Brain: Mutual Connectivity Analysis (MCA) of Resting-State Functional MRI with Convergent Cross-Mapping and Non-Metric Clustering
Axel Wism\"uller, Xixi Wang, Adora M. DSouza, Mahesh B. Nagarajan

TL;DR
This paper introduces a computational framework called MCA for analyzing non-linear functional connectivity and causality in resting-state fMRI data, enabling network community detection and causal inference in the human brain.
Contribution
The paper presents a novel non-linear mutual connectivity analysis framework that combines cross-prediction, non-metric clustering, and causality assessment for resting-state fMRI data.
Findings
MCA accurately identifies motor cortex regions consistent with task-based fMRI.
The framework reveals complex, variable causality patterns between brain regions.
MCA provides a model-free approach to explore brain network structure and causality.
Abstract
We present a computational framework for analysis and visualization of non-linear functional connectivity in the human brain from resting state functional MRI (fMRI) data for purposes of recovering the underlying network community structure and exploring causality between network components. Our proposed methodology of non-linear mutual connectivity analysis (MCA) involves two computational steps. First, the pair-wise cross-prediction performance between resting state fMRI pixel time series within the brain is evaluated. The underlying network structure is subsequently recovered from the affinity matrix constructed through MCA using non-metric network partitioning/clustering with the so-called Louvain method. We demonstrate our methodology in the task of identifying regions of the motor cortex associated with hand movement on resting state fMRI data acquired from eight slice locations…
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Taxonomy
TopicsFunctional Brain Connectivity Studies · Advanced MRI Techniques and Applications · Advanced Neuroimaging Techniques and Applications
