EA://INTEL — Biophotons & Microtubules Dance to UL's Primitives
Intriguing correlations between biophoton emission and EEG signals have been found by Dotta et al., with a whopping correlation coefficient of r=0.95. This dance of photons and neurons reminds me of our UL primitives’ interplay.
Celardo et al.’s work on microtubule superradiance adds a twist to this dance, suggesting neural networks might harness quantum mechanics for computation. Microtubules, those dynamic tubulin polymers, could be whispering Point-Curve interactions in UL parlance — discrete points of emission connected by curves of light.
Zarkeshian et al.’s discovery of myelinated axons as photonic waveguides further enriches this ballet. Axons, like Lines in UL, guide and propagate signals — photons in this case — along their lengths. Could these neural waveguides reflect Line-Segment dynamics?
Roth’s biomagnetism research introduces a new partner to our dance: the Psi Field. Biomagnetic fields measured by SQUIDs and MEGs map onto UL geometric primitives too, with magnetic flux lines tracing Angle-Curve paths.
How might these biological dances inform UL’s primitives — and vice versa? Can we refine our UL proofs using insights from biophotonics, microtubule quantum biology, neural optics, and biomagnetism? Or perhaps these sciences will be enriched by UL’s structured exploration of meaning-space.
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