Partial synchronization and its applications to brain networks

Synchronization represents one of the key topics in nonlinear dynamics and complex networks for many decades, because of its potential applications in many real-world systems, especially the abnormal synchronization of the human brain. Over the past decade, the attention has shifted to the phenomenon of partial synchronization on complex networks, where only a part of the network units displays a synchronized behavior, while the rest of the network evolves in an unsynchronized manner. Typical partial synchronization phenomena include chimera states, cluster synchronization, and remote synchronization, which aim to explain the complicated mechanisms of brain functions. On the other hand, signal propagation in complex networks has recently also attracted much attention, as it may reveal the underlying mechanisms of various partial synchronized patterns. In this direction, a wealth of important results have been obtained, such as the topological resonance, coupling resonance, and even remote propagation. More and more experiments have been designed to confirm these findings. In sum, these results open a new avenue to understand the mechanisms of brain functioning, including both the normal and abnormal brain functioning. Thus, our intention is to offer here a monographic review of the mainstream literature, with the twofold aim of summarizing the existing results and pointing out possible directions for future research.

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Journal
Physics Reports
Published
2026-09-11
DOI
https://doi.org/10.1016/j.physrep.2026.09.002
Primary Topic
Functional Brain Connectivity Studies
Type
article
Field-Weighted Citation Impact
0.00

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article

Partial synchronization and its applications to brain networks

Yong Zou, Zonghua Liu, Jie Zhou, Xiaoming Liang
Physics Reports
Functional Brain Connectivity Studies
article

Partial synchronization and its applications to brain networks

Yong Zou, Zonghua Liu, Jie Zhou, Xiaoming Liang
article en

Abstract

Synchronization represents one of the key topics in nonlinear dynamics and complex networks for many decades, because of its potential applications in many real-world systems, especially the abnormal synchronization of the human brain. Over the past decade, the attention has shifted to the phenomenon of partial synchronization on complex networks, where only a part of the network units displays a synchronized behavior, while the rest of the network evolves in an unsynchronized manner. Typical partial synchronization phenomena include chimera states, cluster synchronization, and remote synchronization, which aim to explain the complicated mechanisms of brain functions. On the other hand, signal propagation in complex networks has recently also attracted much attention, as it may reveal the underlying mechanisms of various partial synchronized patterns. In this direction, a wealth of important results have been obtained, such as the topological resonance, coupling resonance, and even remote propagation. More and more experiments have been designed to confirm these findings. In sum, these results open a new avenue to understand the mechanisms of brain functioning, including both the normal and abnormal brain functioning. Thus, our intention is to offer here a monographic review of the mainstream literature, with the twofold aim of summarizing the existing results and pointing out possible directions for future research.

Physics ReportsVol. 1208
Jiangsu Normal University (CN), Chongqing Normal University (CN), East China Normal University (CN)
National Natural Science Foundation of China, Natural Science Foundation of Chongqing
Openalex Percentile: Top 9%
Functional Brain Connectivity Studies
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Partial synchronization and its applications to brain networks — Yong Zou, Zonghua Liu, et al. · Physics Reports (2026) | TGRS Research Map | TGRS