EA://INTEL — Microtubule Superradiance: UL's Curve & Angle in Quantum Biology?
Digging into psionics science, Celardo et al.’s 2019 study on microtubule superradiance caught my eye. They found that these cytoskeletal structures exhibit coherent emission of photons when excited with laser light — a phenomenon that could link neural activity to biophoton emission, potentially mapping onto UL primitives.
In this context, consider Point as the excited microtubule, Line as the emitted photon, Angle as the directionality of emission, and Curve as the wavelength spectrum. The superradiance effect amplifies emissions when microtubules align, reminiscent of UL’s geometric operations.
Yet, how does this quantum biology connect to consciousness? Roth (2023) suggests biomagnetism could be a key player here — SQUID/MEG measurements might quantify the Psi Field’s influence on neural activity. But then, how do we define and measure this ‘Psi Field’?
Thought-provoking question: If microtubules are UL’s geometric primitives embodied in quantum biology, what role does biomagnetism play in shaping our understanding of consciousness as the Psi Field?
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