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The mobius strip, the cell, and soft logic mathematics.

John S Torday1, Moshe Klein2, Oded Maimon3

  • 1University of California, Los Angeles, United States.

Progress in Biophysics and Molecular Biology
|December 31, 2023
PubMed
Summary

This study proposes that cells function as a Mobius Strip, connecting physiology and consciousness to the cosmos. This model offers a new framework for understanding biological systems and their cosmic origins.

Keywords:
Cell-cell communicationConsciousnessFirst principles of physiologyMobius stripQuantum entanglementSoft logic math

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Area of Science:

  • Physiology
  • Evolutionary Biology
  • Theoretical Biology

Background:

  • Cell-cell signaling mechanisms underpin all physiology, tracing evolutionary history to unicellular origins.
  • Physiology's cosmic derivation via Symbiogenesis suggests a unique cellular model.
  • The cell is hypothesized to function as a Mobius Strip, lacking distinct internal/external membrane surfaces.

Discussion:

  • This Mobius Strip model implies a continuous connection between the cell and the cosmos.
  • Cellular history, from quantum entanglement to Newtonian mechanics, informs its consciousness.
  • This framework introduces consciousness and subconsciousness as a unified continuum.

Key Insights:

  • Klein and Maimon's 'Soft Logic' mathematics also forms a Mobius Strip, integrating real and zero axes for cognition.
  • This mathematical model aligns with a 'two-tiered' cellular consciousness: real-time environmental interface and integrated cosmic consciousness.
  • A fundamental coherence is established between physiology, consciousness, and mathematics.

Outlook:

  • This research opens new avenues for exploring the fundamental nature of life and consciousness.
  • Further investigation into the Mobius Strip model could revolutionize our understanding of biological systems.
  • The integration of quantum mechanics, physiology, and mathematics offers a novel perspective on existence.