Cross-Branch Quantum Information Transfer via Microtubule ER Bridges: A Theoretical Framework for Emotionally Selective Anomalous Cognition
Akshay Honrao BDS PGDIP(Orthodontics)
Zenodo (CERN European Organization for Nuclear Research) July 29, 2026 DOI: 10.5281/zenodo.21669714 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Theoretical or philosophical paper Peer reviewed |
|---|---|
| Key points | Proposes that quantum-scale inter-branch information transfer could produce conscious impressions, synthesizing five domains; of 42 evaluated elements, 22 are established, 14 plausible, and none contradict established physics or neuroscience, and the framework yields six testable predictions. |
Abstract
We present a theoretical framework proposing that quantum-scale information transfer between Everettian branches of the universal wave function could, under specific conditions, produce fragmentary conscious impressions in the human brain. The framework synthesizes five independently established domains — the Many-Worlds Interpretation (MWI), the ER=EPR conjecture, the Gao-Jafferis-Wall (GJW) traversable wormhole mechanism, Orchestrated Objective Reduction (Orch-OR) quantum biology, and classical neuroscience — into a single mechanistic chain. We evaluate 42 elements against established physics and neuroscience, finding 22 established, 14 plausible, and 0 hard contradictions. The framework generates six experimentally testable predictions.