455
Views
21
CrossRef citations to date
0
Altmetric
Articles

Electromagnetic homeostasis and the role of low-amplitude electromagnetic fields on life organization

&
Pages 115-122 | Received 21 Jan 2016, Accepted 24 May 2016, Published online: 11 Jul 2016

References

  • Ahmed, N. A. G., Calderwood, J. H., Fröhlich, H., Smith, C. W. (1975). Evidence for collective magnetic effects in an enzyme likelihood of room temperature superconductive regions. Phys. Lett. A. 53:129–130.
  • Blank, M. (2008). Protein and DNA reaction stimulated by electromagnetic fields. Electromagn. Biol. Med. 27:1–21.
  • Blank, M., Goodman, R. (2011). DNA is a fractal antenna in electromagnetic fields (EMF). Int. J. Rad. Biol. 87:409–415.
  • Bono, I., Del Giudice, E., Gamberale, L., Henry, M. (2012). Emergence of the coherent structure of liquid water. Water 4:510–532.
  • Bullock, T. H., McClune, M. C., Achimowicz, J. Z., et al. (1995). Temporal fluctuations in coherence of brain waves. Proc Natl. Acad. Sci. USA. 92:1.
  • Cifra, M., Fields, J. Z., Farhadi, A. (2011). Electromagnetic cellular interactions. Prog. Biophys. Mol. Biol. 105:223–246. 1568–1572.
  • Cifra, M., Pokorny, J., Jelnek, F., Kučera, O. (2009). Vibrations of electrically polar structures in biosystems give rise to electromagnetic field: Theories and experiments: PIERS Proceedings, Moscow, Russia, August 18–21, 2009.
  • Cherry, N. J. (2003). Human intelligence: The brain, an electromagnetic system synchronized by the Schumann resonance signal. Med. Hypotheses. 60:843–844.
  • Del Giudice, E., Doglia, S., Milani, M., Vitiello, G. (1985). A quantum field theoretical approach to the collective behavior of biological systems. Nucl. Phys. B. 251(C):375–400.
  • Del Giudice, E., Doglia, S., Milani, M., Vitiello, G. (1983). Spontaneous symmetry breakdown and boson condensation in biology. Phys. Lett. A. 95:508–510.
  • De Ninno, A., Congiu Castellano, A. (2011). Deprotonation of glutamic acid induced by weak electromagnetic field: An FTIR–ATR study. Bioelectromagnetics 32:218–225.
  • De Ninno, A., Congiu Castellano, A. (2014). Influence of magnetic fields on the hydration process of amino acids: Vibrational spectroscopy study of L-phenylalanine and L-glutamine. Bioelectromagnetics 35:129–135.
  • De Ninno, A., Del Giudice, E., Gamberale, L., Congiu Castellano, A. (2014). The structure of liquid water emerging from the vibrational spectroscopy: Interpretation with QED theory. Water 6:13–25.
  • El-Naggar, M. Y., Wanger, G., Leung, K. M., et al. (2010). Electrical transport along bacterial nanowires from Shewanella oneidensis MR-1. PNAS, 107:18127–18131.
  • Engel, G. S., Calhoun, T. R., Read, E. L., et al. (2007). Evidence for wavelike energy transfer through quantum coherence in photosynthetic systems. Nature 446:782–786.
  • Fröhlich, H. (1968). Long-range coherence and energy storage in biological systems. Int. J. Quantum. Chem. 2:641–649.
  • Hagler, A. T., Némethy, G., Scheraga, H. A. (1972). Structure of liquid water. Statistical thermodynamic theory. J. Phys. Chem. 76:3229–3243.
  • Kelley, S. O., Barton, J. K. (1999). Electron transfer between bases in double helical DNA. Science 283:375–381.
  • Kučera, O., Červinková, K., Nerudová, M., Cifra, M. (2015). Spectral perspective on the electromagnetic activity of cells. Curr. Topics Med. Chem. 15:513–522.
  • Ley, R. E., Lozupone, C. A., Hamady, M., et al. (2008). Worlds within worlds: Evolution of the vertebrate gut microbiota. Nat. Rev. Microbiol. 6:776–788.
  • Liboff, A. R. (1998). Electric-field ion cyclotron resonance. Bioelectromagnetics 18:85–87.
  • Limansky, J., Samosyuk, I., Chukhraev, N., Zukow, W. (2014). Concept of electromagnetic homeostasis and theoretical rationale for the use of low-intensity electromagnetic fields in clinical practice. Acta. Balneol. Tom. LIV Nr 3:204–213.
  • Liu, D. S., Asumian, R. D., Tsong, T. Y. (1990). Activation of the Na+ and K+ pumping modes of (Na, K)-ATPase by oscillating electric field. J. Biol. Chem. 265(13):7260–7267.
  • McFadden, J. (2002). Synchronous firing and its influence on the brain’s electromagnetic field: Evidence for an electromagnetic theory of consciousness. J. Consciousness Stud. 9:23–50.
  • McFadden, J. 2007. Conscious electromagnetic (CEMI) field theory. NeuroQuantology 5(3):262–270.
  • Montagnier, L., Aïssa, J., Ferris, S., et al. (2009). Inter. Sci. Comput. Life Sci. 1:81–90.
  • Montagnier, L., Aïssa, J., Del Giudice, E., et al. (2011). DNA waves and water. J. Phys. Conf. Ser. 306:012007.
  • Némethy, G., Scheraga, H. A. (1962). A model for the physical properties of water. J. Chem. Phys. 36:3382–3340.
  • Nielsen, L. P., Risgaard-Petersen, N., Fossing, H., et al. (2010). Electric currents couple spatially separated biogeochemical processes in marine sediment, Nature. 463:1071–1074.
  • Panitchayangkoon, G., Hayes, D., Fransted, K.A., et al. (2010). Long-lived quantum coherence in photosynthetic complexes at physiological temperature, PNAS 107:12766–12770.
  • Pilla, A. (2006). Mechanisms and therapeutic applications of time varying and static magnetic fields. In Barnes F, Greenbaum B, editors. Handbook of Biological Effects of Electromagnetic Fields. 3rd edition. Boca Raton, FL: CRC Press.
  • Pockett, S. (2002). Difficulties with the electromagnetic field theory of consciousness. J. Consciousness Stud. 9:51–55.
  • Pockett, S. (2007). Difficulties with the electromagnetic field theory of consciousness: An update. NeuroQuantology 5(3):271–275.
  • Pokorný, J. (2001). Endogenous electromagnetic forces in living cells: Implication for transfer of reaction components. Electro Magnetobiol. 20:59–73.
  • Pregnolato, M. (2011). Biodiversity in the human physical body. The new frontiers of metagenomics and quorum sensing. Int J Anthropologyn. 1–2:95–100.
  • Preparata, G. (1995). QED Coherence in Condensed Matter. New Jersey, Singapore, London: World Scientific, pp. 25–40.
  • Sender, R., Fuchs, S., Milo, R. (2016). Revised estimates for the number of human and bacteria cells in the body. bioRxiv preprint first posted online Jan. 6, 2016.
  • Singer, W. (1998). Consciousness and the structure of neuronal representations. Philos. Trans. R. Soc. Lond. B Biol. Sci. 353:1829–40.
  • Taschin, A., Bartolini, P., Eramo, R., et al. (2013). Evidence of two distinct local structures of water from ambient to supercooled conditions. Nat. Commun. 4:2401–2411.
  • Tsong, T. Y. (1989). Deciphering the language of cells. Trends. Biochem. Sci. 14:89–92.
  • Wan, C., Fiebig, T., Kelley, S.O. et al. (1999). Femtosecond dynamics of DNA-mediated electron transfer. PNAS USA. 96:6014–6019.
  • Widom, A., Swain, J., Srivastava, Y.N., Sivasubramanian, S. (2011). Electromagnetic signals from bacterial DNA: arXiv:1104.3113 [physics.gen-ph].
  • Zhadin, M. N., Novikov, V. V., Barnes, F. S., Pergola, N. F. (1998). Combined action of static and alternating magnetic fields on ionic current in aqueous glutamic acid solution. Bioelectromagnetics 19:41–45.
  • Zhu, Y., Zhang, S., Wen, J. (1990). Influence of orientation on the piezoelectric properties of deoxyribonucleic acid. Ferroelectrics 101:129–139.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.