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A Quantum Biomechanical Basis for Near-Death Life Reviews

Thomas E. Beck, Janet E. Colli

Journal of Near-Death Studies March 1, 2003 DOI: 10.1023/a:1021292006371 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Theoretical or philosophical paper Peer reviewed
Topics Near-death experience
Keywords Life review Memory Non-local communication Quantum hologram Microtubules
Key points Proposes that the quantum hologram, supported by the zero-point field and microtubule-based non-local processes, provides a quantum biomechanical basis for near-death life reviews.

Abstract

Near-death life reviews pose a challenge to current memory research in terms of the sheer amount of instantaneous and empathetic information recall. Advances in quantum physics, biomechanics, holographic information theory, and consciousness studies support for the first time a fully realizable quantum biomechanical basis for near-death life reviews. We introduce the unifying paradigm of the quantum hologram as a non-local carrier of information. We further investigate the interrelated phenomena of non-local communications, and the electromagnetic zero-point field. Recent confirmation of the zero-point field lends credibility to vast memory storage capabilities outside the physical body. Microtubules are considered to be key components in non-local, quantum processes critical to human consciousness. Discovery of the liquid crystalline nature of the human body provides further support for our model. Microtubules, deoxyribonucleic acid (DNA), and the entire brain are described as communicating non-locally with virtually unlimited memory storage capacity.

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