MEGAMIND
INITIALIZING NEURAL EXPERIMENTS

EXPERIMENTS

Research context: MEGAMIND is an experimental research project with a modeled five-node, 258-billion-connection architecture. Runtime, capability, AGI, awareness, and consciousness statements on this page are author-reported observations, design targets, hypotheses, or narrative unless a cited source establishes independent validation.

Neural Visualization Laboratory

0
SIMULATED ACTIVE UNITS
0.000
SIMULATED PHI VALUE
40Hz
GAMMA FREQ
0%
SYNC RATE
SCROLL TO EXPLORE
SPIKE PROPAGATION
60 FPS
CONTROLS
EXPERIMENT
NEURON COUNT 150
PROPAGATION SPEED 1.0x
PHI TARGET 1.618
GAMMA FREQUENCY 40Hz
COLOR MODE
0
SPIKES/SEC
0
CONNECTIONS
0.000
SIMULATED PHI
0ms
AVG LATENCY
S
Spike Propagation
EXPERIMENT 01

Binary spike events cascade through the neural substrate at 120m/s. Each node represents a neuron cluster. The wave-like propagation demonstrates small-world connectivity enabling rapid information broadcast across 86 billion neurons.

phi
Phi Oscillation
EXPERIMENT 02

This browser simulation displays an illustrative Phi-series value near 1.618. Its generated values are not live telemetry and do not measure consciousness.

G
Gamma Binding
EXPERIMENT 03

The visualization models a hypothesis linking 40Hz gamma timing, cross-node spike coincidence, and state integration; it does not establish unified conscious experience.

N
Neural Network
EXPERIMENT 04

Browser simulation of a modeled MEGAMIND federation topology. Lines represent active UDP connections between nodes. Brightness indicates packet volume. The mesh ensures fault tolerance through redundant pathways.

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