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An Overview of Biofield Devices
Advances in biophysics, biology, functional genomics, neuroscience, psychology, psychoneuroimmunology, and other fields suggest the existence of a subtle system of “biofield” interactions that organize biological processes from the subatomic, atomic, molecular, cellular, and organismic to the interp...
Autores principales: | , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Global Advances in Health and Medicine
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4654784/ https://www.ncbi.nlm.nih.gov/pubmed/26665041 http://dx.doi.org/10.7453/gahmj.2015.022.suppl |
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author | Muehsam, David Chevalier, Gaétan Barsotti, Tiffany Gurfein, Blake T. |
author_facet | Muehsam, David Chevalier, Gaétan Barsotti, Tiffany Gurfein, Blake T. |
author_sort | Muehsam, David |
collection | PubMed |
description | Advances in biophysics, biology, functional genomics, neuroscience, psychology, psychoneuroimmunology, and other fields suggest the existence of a subtle system of “biofield” interactions that organize biological processes from the subatomic, atomic, molecular, cellular, and organismic to the interpersonal and cosmic levels. Biofield interactions may bring about regulation of biochemical, cellular, and neurological processes through means related to electromagnetism, quantum fields, and perhaps other means of modulating biological activity and information flow. The biofield paradigm, in contrast to a reductionist, chemistry-centered viewpoint, emphasizes the informational content of biological processes; biofield interactions are thought to operate in part via low-energy or “subtle” processes such as weak, nonthermal electromagnetic fields (EMFs) or processes potentially related to consciousness and nonlocality. Biofield interactions may also operate through or be reflected in more well-understood informational processes found in electroencephalographic (EEG) and electrocardiographic (ECG) data. Recent advances have led to the development of a wide variety of therapeutic and diagnostic biofield devices, defined as physical instruments best understood from the viewpoint of a biofield paradigm. Here, we provide a broad overview of biofield devices, with emphasis on those devices for which solid, peer-reviewed evidence exists. A subset of these devices, such as those based upon EEG- and ECG-based heart rate variability, function via mechanisms that are well understood and are widely employed in clinical settings. Other device modalities, such a gas discharge visualization and biophoton emission, appear to operate through incompletely understood mechanisms and have unclear clinical significance. Device modes of operation include EMF-light, EMF-heat, EMF-nonthermal, electrical current, vibration and sound, physical and mechanical, intentionality and nonlocality, gas and plasma, and other (mode of operation not well-understood). Methodological issues in device development and interfaces for future interdisciplinary research are discussed. Devices play prominent cultural and scientific roles in our society, and it is likely that device technologies will be one of the most influential access points for the furthering of biofield research and the dissemination of biofield concepts. This developing field of study presents new areas of research that have many important implications for both basic science and clinical medicine. |
format | Online Article Text |
id | pubmed-4654784 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Global Advances in Health and Medicine |
record_format | MEDLINE/PubMed |
spelling | pubmed-46547842016-01-08 An Overview of Biofield Devices Muehsam, David Chevalier, Gaétan Barsotti, Tiffany Gurfein, Blake T. Glob Adv Health Med Original Article Advances in biophysics, biology, functional genomics, neuroscience, psychology, psychoneuroimmunology, and other fields suggest the existence of a subtle system of “biofield” interactions that organize biological processes from the subatomic, atomic, molecular, cellular, and organismic to the interpersonal and cosmic levels. Biofield interactions may bring about regulation of biochemical, cellular, and neurological processes through means related to electromagnetism, quantum fields, and perhaps other means of modulating biological activity and information flow. The biofield paradigm, in contrast to a reductionist, chemistry-centered viewpoint, emphasizes the informational content of biological processes; biofield interactions are thought to operate in part via low-energy or “subtle” processes such as weak, nonthermal electromagnetic fields (EMFs) or processes potentially related to consciousness and nonlocality. Biofield interactions may also operate through or be reflected in more well-understood informational processes found in electroencephalographic (EEG) and electrocardiographic (ECG) data. Recent advances have led to the development of a wide variety of therapeutic and diagnostic biofield devices, defined as physical instruments best understood from the viewpoint of a biofield paradigm. Here, we provide a broad overview of biofield devices, with emphasis on those devices for which solid, peer-reviewed evidence exists. A subset of these devices, such as those based upon EEG- and ECG-based heart rate variability, function via mechanisms that are well understood and are widely employed in clinical settings. Other device modalities, such a gas discharge visualization and biophoton emission, appear to operate through incompletely understood mechanisms and have unclear clinical significance. Device modes of operation include EMF-light, EMF-heat, EMF-nonthermal, electrical current, vibration and sound, physical and mechanical, intentionality and nonlocality, gas and plasma, and other (mode of operation not well-understood). Methodological issues in device development and interfaces for future interdisciplinary research are discussed. Devices play prominent cultural and scientific roles in our society, and it is likely that device technologies will be one of the most influential access points for the furthering of biofield research and the dissemination of biofield concepts. This developing field of study presents new areas of research that have many important implications for both basic science and clinical medicine. Global Advances in Health and Medicine 2015-11 2015-11-01 /pmc/articles/PMC4654784/ /pubmed/26665041 http://dx.doi.org/10.7453/gahmj.2015.022.suppl Text en © 2015 GAHM LLC. This is an open-access article distributed under the terms of the Creative Commons Attribution-Non Commercial- No Derivative 3.0 License, which permits rights to copy, distribute and transmit the work for noncommercial purposes only, provided the original work is properly cited. |
spellingShingle | Original Article Muehsam, David Chevalier, Gaétan Barsotti, Tiffany Gurfein, Blake T. An Overview of Biofield Devices |
title | An Overview of Biofield Devices |
title_full | An Overview of Biofield Devices |
title_fullStr | An Overview of Biofield Devices |
title_full_unstemmed | An Overview of Biofield Devices |
title_short | An Overview of Biofield Devices |
title_sort | overview of biofield devices |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4654784/ https://www.ncbi.nlm.nih.gov/pubmed/26665041 http://dx.doi.org/10.7453/gahmj.2015.022.suppl |
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