Home▸Neuroscience & Biophysics▸Brain Connectome Pulses (2D): Integrate-and-Fire Signal Propagation

Brain Connectome Pulses (2D): Integrate-and-Fire Signal Propagation

2D schematic brain-connectome lab: a 16-region weighted structural-connectivity graph driven by real integrate-and-fire dynamics — activation accumulates with distance-scaled propagation delay, leaks over time, and fires only past threshold, cascading through the network.

Neuroscience & Biophysics2DModerate60 FPS📱 Mobile-adapted⇄ 3D version
2d-brain-connectome-pulses ↗ Open standalone

This 2D companion trades the 3D version's orbiting scene for a readable schematic: a fixed 16-region structural-connectivity graph driven by a real leaky integrate-and-fire model, where activation accumulates per node, decays over time, and only crosses to a neighbour once it clears an adjustable threshold — with conduction delay scaled by on-screen distance and propagation speed, so cascades visibly sweep across the network edge by edge rather than pulsing decoratively.

⚙ Under the hood

2D schematic brain-connectome lab with a 16-region weighted structural-connectivity graph driven by real integrate-and-fire dynamics: activation accumulates with distance-scaled propagation delay, leaks over time, and fires only past threshold, cascading through the network.

connectomeintegrate-and-firenetwork propagationsynaptic transmissionstructural connectivityneural cascade

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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