Computational review reveals geometric symmetry but unverified quantum coherence in microtubules, highlighting an ongoing gap between physical models and experimental biology.
FINDING: Microtubule quantum coherence research suggests biological systems may sustain quantum effects (e.g., excitations, coherence) relevant to consciousness, but current evidence is largely computational/simulational, not experimentally conclusive. | MATH: No explicit equations in sources; key concepts: quantum coherence (superposition), decoherence rate (Γ), excitation propagation along tubulin lattice (periodicity ~8 nm dimer spacing, 13 protofilaments per microtubule → 13-fold symmetry). | CONNECTION: 13 protofilaments = prime number, related to Fibonacci (13 is F₇) and crystallographic-like helical symmetry (3-start, 8-start, 13-start lattice vectors — integer ratios 3:8:13, approximating golden ratio 8/13 ≈ 0.615, 13/8 ≈ 1.625, close to 0.618/1.618). | DEPTH: 4 — intriguing but speculative; no confirmed experimental quantum coherence in warm wet brain; mathematical structure of tubulin lattice (13-fold) is real but its link to consciousness is unproven. Author: Andrew Stewart Caldin, Independent Researcher, UK. Part of the E8 Intelligence Research series. Platform: e8intelligence.com
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Andrew Stewart Caldin (2026) studied this question.
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