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Neuro-functional modeling of near-death experiences in contexts of altered states of consciousness.

Raymond Romand, Günter Ehret

Frontiers in psychology January 1, 2022 DOI: 10.3389/fpsyg.2022.846159 via PubMed

Summary

AI-generated from the abstract

Near-death experiences (NDEs), including out-of-body experiences (OBEs), can be explained by neuro-functional models of altered brain states. By comparing reports from original NDEs with those from experimental settings—such as drug consumption, epilepsy, brain stimulation, ischemic stress, and fighter pilot tests under gravitational stress causing cephalic nervous system ischemia—a large overlap of themes emerged. These models offer scientifically appropriate causal explanations for NDEs. The generation of OBEs can be localized to the temporo-parietal junction, a multimodal association area. The literature suggests that NDEs may arise as hallucination-like phenomena from a brain in altered states of consciousness.

Study at a glance

Characteristics Review Peer reviewed
Keywords Ndes/obes/g-locs Brain death Hallucinations Hypoxia Ischemic stress
Citations 8
Key finding Neuro-functional models of altered states of consciousness collectively offer scientifically appropriate causal explanations for near-death experiences, with out-of-body experiences localized to the temporo-parietal junction.

Abstract

Near-death experiences (NDEs) including out-of-body experiences (OBEs) have been fascinating phenomena of perception both for affected persons and for communities in science and medicine. Modern progress in the recording of changing brain functions during the time between clinical death and brain death opened the perspective to address and understand the generation of NDEs in brain states of altered consciousness. Changes of consciousness can experimentally be induced in well-controlled clinical or laboratory settings. Reports of the persons having experienced the changes can inform about the similarity of the experiences with those from original NDEs. Thus, we collected neuro-functional models of NDEs including OBEs with experimental backgrounds of drug consumption, epilepsy, brain stimulation, and ischemic stress, and included so far largely unappreciated data from fighter pilot tests under gravitational stress generating cephalic nervous system ischemia. Since we found a large overlap of NDE themes or topics from original NDE reports with those from neuro-functional NDE models, we can state that, collectively, the models offer scientifically appropriate causal explanations for the occurrence of NDEs. The generation of OBEs, one of the NDE themes, can be localized in the temporo-parietal junction (TPJ) of the brain, a multimodal association area. The evaluated literature suggests that NDEs may emerge as hallucination-like phenomena from a brain in altered states of consciousness (ASCs).

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