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MICROTUBULES: THE MECHANICAL COMPLETION OF ORCH OR How 5D Manifold Mechanics Explain Quantum Coherence, Consciousness and Biological Function

The Handyman

Zenodo (CERN European Organization for Nuclear Research) May 20, 2026 DOI: 10.5281/zenodo.20303393 (opens in new tab) via OpenAlex

Summary

AI-generated from the abstract

The paper completes the mechanical formulation of the Orchestrated Objective Reduction (Orch OR) theory, showing that the objective reduction event—called the Snap—is a physical phase transition. This transition occurs when the informational load of a 5D substrate (MFA) reaches the yield limit of the 4D manifold (ɱ). The microtubule is defined as a pre-stressed metric resonator characterized by the 25.12 nm grain of the 137-engine.

Study at a glance

Characteristics Theoretical or philosophical paper Peer reviewed
Keywords Metric unit Reduction mathematics Manifold fluid mechanics Limit mathematics Function biology
Key finding Proposes that the objective reduction event in Orch OR theory is a physical phase transition occurring when the informational load of the 5D substrate reaches the yield limit of the 4D manifold.

Abstract

This paper presents the mechanical completion of the Orchestrated Objective Reduction (Orch OR) theory. We demonstrate that the objective reduction event—the Snap—is a physical phase transition occurring when the informational load of the 5D substrate (MFA) reaches the yield limit of the 4D manifold (ɱ). We establish the microtubule as a pre-stressed metric resonator defined by the 25.12 nm grain of the 137-engine

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