Neurochemical models of near-death experiences: A large-scale study based on the semantic similarity of written reports.

Charlotte Martial, Héléna Cassol, Vanessa Charland-Verville, Carla Pallavicini, Camila Sanz, Federico Zamberlan, Rocío Martínez Vivot, Fire Erowid, Earth Erowid, Steven Laureys, Bruce Greyson, Enzo Tagliazucchi

Journal: Consciousness and cognition 2020;69():52-69

PMID: 30711788

Abstract

The real or perceived proximity to death often results in a non-ordinary state of consciousness characterized by phenomenological features such as the perception of leaving the body boundaries, feelings of peace, bliss and timelessness, life review, the sensation of traveling through a tunnel and an irreversible threshold. Near-death experiences (NDEs) are comparable among individuals of different cultures, suggesting an underlying neurobiological mechanism. Anecdotal accounts of the similarity between NDEs and certain drug-induced altered states of consciousness prompted us to perform a large-scale comparative analysis of these experiences. After assessing the semantic similarity between ≈15,000 reports linked to the use of 165 psychoactive substances and 625 NDE narratives, we determined that the N-methyl-D-aspartate (NMDA) receptor antagonist ketamine consistently resulted in reports most similar to those associated with NDEs. Ketamine was followed by Salvia divinorum (a plant containing a potent and selective κ receptor agonist) and a series of serotonergic psychedelics, including the endogenous serotonin 2A receptor agonist N,N-Dimethyltryptamine (DMT). This similarity was driven by semantic concepts related to consciousness of the self and the environment, but also by those associated with the therapeutic, ceremonial and religious aspects of drug use. Our analysis sheds light on the long-standing link between certain drugs and the experience of "dying", suggests that ketamine could be used as a safe and reversible experimental model for NDE phenomenology, and supports the speculation that endogenous NMDA antagonists with neuroprotective properties may be released in the proximity of death.

Copyright © 2019. Published by Elsevier Inc.

Address: Coma Science Group, GIGA-Consciousness and Neurology Department, University and University Hospital of Liège, Liège, Belgium.; Buenos Aires Physics Institute (IFIBA) and National Scientific and Technical Research Council (CONICET), Pabellón I, Ciudad Universitaria (1428), Buenos Aires, Argentina.; Fundación para la lucha contra las enfermedades neurológicas de la infancia (FLENI), Buenos Aires, Argentina.; Departamento de Física, Universidad de Buenos Aires, Buenos Aires, Argentina.; Buenos Aires Physics Institute (IFIBA) and National Scientific and Technical Research Council (CONICET), Pabellón I, Ciudad Universitaria (1428), Buenos Aires, Argentina.; Departamento de Física, Universidad de Buenos Aires, Buenos Aires, Argentina.; Buenos Aires Physics Institute (IFIBA) and National Scientific and Technical Research Council (CONICET), Pabellón I, Ciudad Universitaria (1428), Buenos Aires, Argentina.; Instituto de Investigaciones Biomédicas (BIOMED) and National Scientific and Technical Research Council (CONICET), Buenos Aires, Argentina.; Erowid Center, Grass Valley, CA, United States.; Department of Psychiatry and Neurobehavioral Sciences, University of Virginia Health System, United States.; Buenos Aires Physics Institute (IFIBA) and National Scientific and Technical Research Council (CONICET), Pabellón I, Ciudad Universitaria (1428), Buenos Aires, Argentina.; Departamento de Física, Universidad de Buenos Aires, Buenos Aires, Argentina; UMR7225 Institut du cerveau et de la moelle épinière (ICM), Paris, France. Electronic address: [email protected].

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