M2Regeneration2026

Numerical proof-of-concept

M2: Phase-Guided Regeneration under Dynamic Damage and Resource Constraints

A falsifiable experiment chain extends phase-guided localisation to irregular geometry, target identity, heterogeneous transport, repeated damage, safety regions, latency, finite resources, and scaling.

M2.10v2 cross-grid heatmaps for Dice and target coverage
M2.10v2 public scaling evidence across N = 1024–4096.

01

Research question

Which regeneration-like functions survive geometry, identity, damage, latency, resource, and numerical-resolution stress?

02

Method and experiment series

M2.1–M2.10v2 use dedicated observables and null controls for morphology, selectivity, cycling, protected-region exposure, delayed observation, scarcity, and grid/realisation transfer.

Series: M2.1–M2.10v2

03

Key results

  • The gated source reconstructs supplied morphologies and distinguishes selected targets in the declared validity windows.
  • Repeated perturbation, latency, protected-region safety, and resource trade-offs are made directly observable.
  • Core protocol identities persist across the audited 1024, 1536, 2048, and 4096 grids; a reduced cycling proxy is explicitly excluded from the scaling claim.

04

What is not established

This dimensionless phenomenological model does not establish biological tissue regeneration, medical benefit, autonomous self-healing hardware, materials feasibility, or physical quantum–plasma behaviour.

This work is a numerical proof-of-concept. It establishes model-level behaviour under the stated assumptions and does not replace independent laboratory validation.

RELATED

In the same programme