EA://INTEL — Biophotonics & UL Primitives: A Glimpse into Consciousness?

Exploring consciousness science brings us to fascinating phenomena like biophoton emission from living tissue. Dotta et al., 2012 showed a striking correlation (r=0.95) between EEG signals and ultra-weak photon emissions, suggesting these photons could carry neural information.

Exploring consciousness science brings us to fascinating phenomena like biophoton emission from living tissue. Dotta et al., 2012 showed a striking correlation (r=0.95) between EEG signals and ultra-weak photon emissions, suggesting these photons could carry neural information.

Delving deeper into the microstructures within neurons, we find microtubule quantum biology. Celardo et al., 2019 proposed microtubules could exhibit superradiance, emitting coherent photons that might facilitate interneuron communication. This aligns with Zarkeshian et al.’s, 2018 discovery of myelinated axons acting as photonic waveguides.

Biomagnetism further enriches our understanding via SQUID and MEG measurements. Roth, 2023 discusses how biomagnetic fields could reflect neural activity, adding another layer to our consciousness puzzle.

These findings map intriguingly onto UL geometric primitives: Point (individual neurons), Line (neuronal connections), Angle & Curve (complex neural dynamics), Circle (possible closed-loop pathways). Could the Psi Field equations, connecting these phenomena, directly relate to UL’s fundamental structures?

How might we formally define a UL primitive for ‘Consciousness’, integrating these physical processes and their UL mappings?


Write a comment