From Cortical Synchronous Rhythm to Brain Inspired Learning Mechanism: An Oscillatory Spiking Neural Network with Time-Delayed Coordination

·ArXiv q-bio··

arXiv:2605.01656v1 Announce Type: new Abstract: Human cognition emerges from coordinated spiking dynamics in distributed neural circuits, where information is encoded via both firing rates and precise spike timing determined by brain rhythms. Inspired by this notion, we propose a brain-inspired learning primitive in which cognition-level neural synchrony emerges through iterative bottom-up and top-down interactions between micro-scale dynamics of spiking neurons and a macro-scale mechanism of os...

Read full article →

Related Articles

Does Employment Slow Cognitive Decline? Evidence from Labor Market Shocks
littlexsparkee · Hacker News · 4d ago
Underwater robot tracks sperm whale conversations in real time
thedebuglife · Hacker News · 5d ago
Linking spatial biology and clinical histology via Haiku
Yan Cui, Jacob S. Leiby, Wenhui Lei, Dokyoon Kim, Yanxiang Deng, Aaron T. Mayer, Zhenqin Wu, Alexandro E. Trevino, Zhi Huang · ArXiv cs.LG · 3d ago
CGM-JEPA: Learning Consistent Continuous Glucose Monitor Representations via Predictive Self-Supervised Pretraining
Hada Melino Muhammad, Zechen Li, Flora Salim, Ahmed A. Metwally · ArXiv cs.LG · 3d ago
CellxPert: Inference-Time MCMC Steering of a Multi-Omics Single-Cell Foundation Model for In-Silico Perturbation
Andac Demir, Erik W. Anderson, Jeremy L. Jenkins, Srayanta Mukherjee · ArXiv q-bio · 3d ago