Research question
Can a phase-sensitive drive localise a field to a target and preserve its supplied geometry under noise and parameter changes?
MODEL SCOPE
Public model description
A scalar field is driven by a supplied target mask, a DC-shifted phase-sensitive carrier, and a temporal gate. Local accumulation is compared with the target through coverage, energy, Dice, and IoU.
PROTOCOL
Declared evidence chain
M1–M5 establish controls and ablations; M6 tests lesion localisation; M7 tests supplied cell-shape preservation and lock-in under the reported perturbations.
Series: M1–M7 · controls · lesion localisation · shape preservation
- M1–M7
- controls
- lesion localisation
- shape preservation
The labels below preserve the public protocol identity. They are an index to the publication, not a substitute for its full methods or an open reproducibility bundle.
EVIDENCE
Results inside the model
INTERACTIVE MODEL LENS
Target-localisation lens
A supplied target, gated phase-sensitive drive, and shape-lock response expressed without biological interpretation.
Coverage and shape observables stabilise for selected drive-width matching.
- The gated field accumulates locally during ON windows.
- M6–M7 report lock-in of coverage and energy.
- Near-perfect cell-level Dice/IoU is reported for selected drive-width matching, while exact numerical tables are intentionally omitted.
BOUNDARY
CLAIM BOUNDARY
- 01Declared numerical protocol
M1–M7 · controls · lesion localisation · shape preservation
- 02Supported model-level finding
The gated field accumulates locally during ON windows.
- Claim boundary
- 03Requires a separate validation chain
The target is supplied to the computational medium. This is not biological regeneration, tissue growth, medical efficacy, or physical self-healing material validation.
Numerical evidence is not physical validation. Transfer to a material, device, organism, environment, or operational service requires a separate validation chain whenever such a transfer is relevant.
Publication record
- Author
- Nikita Teslia
- Programme
- Regeneration
- Claim type
- Numerical proof-of-concept
- Year
- 2025
- Dossier review
- Series
- M1–M7 · controls · lesion localisation · shape preservation
- License
- CC BY-NC-ND 4.0
- DOI
- 10.5281/zenodo.17203697
Citation
Teslia, N. (2025). Phase Regeneration (M1): A Phase-Locked Regeneration Mechanism in a Computational Medium. Zenodo. https://doi.org/10.5281/zenodo.17203697Open publication recordThe DOI is the canonical external record. The site condenses the public publication and does not replace it.
PROGRAMME TOPOLOGY
Research lineage
Lineage records publication sequence and explicit revision or supersession links. It does not assert empirical causation or an otherwise unverified cross-branch dependence.
No predecessor is asserted in the current research graph.