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Jiaqi Ding

5 accepted papers

2026

SyncBrain: Exploring Brain Functional Dynamics Through Neural Oscillatory Synchronization

AAAI 2026technical

Neural coupling is a fundamental mechanism in neuroscience that facilitates the emergence of cognitive functions through dynamic interactions and synchronization among distributed brain regions. Inspired by this principle, we pose the question: Might the biological mechanism of neural oscillatory sy

Cited by 0SourcePDFScholar
2025

BrainMAP: Learning Multiple Activation Pathways in Brain Networks

AAAI 2025technical

Functional Magnetic Resonance Image (fMRI) is commonly employed to study human brain activity, since it offers insight into the relationship between functional fluctuations and human behavior. To enhance analysis and comprehension of brain activity, Graph Neural Networks (GNNs) have been widely appl…

2025

Let Brain Rhythm Shape Machine Intelligence for Connecting Dots on Graphs

NeurIPS 2025poster

In both neuroscience and artificial intelligence (AI), it is well-established that neural “coupling” gives rise to dynamically distributed systems. These systems exhibit self-organized spatiotemporal patterns of synchronized neural oscillations, enabling the representation of abstract concepts. By c…

Cited by 0SourceScholar
2024

$\textit{NeuroPath}$: A Neural Pathway Transformer for Joining the Dots of Human Connectomes

NeurIPS 2024poster

Although modern imaging technologies allow us to study connectivity between two distinct brain regions $\textit{in-vivo}$, an in-depth understanding of how anatomical structure supports brain function and how spontaneous functional fluctuations emerge remarkable cognition is still elusive. Meanwhile…

Cited by 0SourcePDFScholar
2023

Re-Think and Re-Design Graph Neural Networks in Spaces of Continuous Graph Diffusion Functionals

NeurIPS 2023poster

Graphs are ubiquitous in various domains, such as social networks and biological systems. Despite the great successes of graph neural networks (GNNs) in modeling and analyzing complex graph data, the inductive bias of locality assumption, which involves exchanging information only within neighboring…