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abstract: 'Electric spin effects are effects of electric fields on the dynamics/motions of nuclear/electron spins and related phenomena. Since classical brain activities are largely electric, we explore here a model of mind-brain interaction within the framework of spin-mediated consciousness theory in which these effects in the varying high-voltage electric fields inside neural membranes and proteins mediate mind-brain input and output processes. In particulars, we suggest that the input processes in said electric fields are possibly mediated by spin transverse forces and/or Dirac-Hestenes electric dipoles both of which are associated with the nuclear/electronic spin processes. We then suggest that the output processes (proactive spin processes) in said electric fields possibly involve Dirac negative energy extraction processes, shown by Solomon, and also Dirac-Hestenes electric dipole interactions of nuclei/electrons besides non-local processes driven by quantum information. We propose that these output processes modulate the action potentials, thus influencing the brain, by affecting the cross-membrane electric voltages and currents directly and/or indirectly through changing the capacitance, conductance and/or battery in the Hudgkin-Huxley model. These propositions are based on our own experimental findings, further theoretical considerations, and studies reported by others in the fields of spintronics, high-energy physics and alternative energy research.'
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creators_name:
- family: Hu
given: Huping
honourific: ''
lineage: ''
- family: Wu
given: Maoxin
honourific: ''
lineage: ''
date: 2008-03-03
date_type: published
datestamp: 2008-03-10 14:55:50
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editors_id: []
editors_name:
- family: Tarlaci
given: Sultan
honourific: Dr.
lineage: ''
eprint_status: archive
eprintid: 5955
fileinfo: /style/images/fileicons/application_pdf.png;/5955/1/ElectricSpinEffect.pdf
full_text_status: public
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keywords: 'spin, mind-pixel, electric spin effect, spin transverse force, Dirac-Hestenes electric dipole, electric field, proactive spin'
lastmod: 2011-03-11 08:57:04
latitude: ~
longitude: ~
metadata_visibility: show
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number: 1
pagerange: 26-31
pubdom: FALSE
publication: NeuroQuantology
publisher: NeuroQuantology
refereed: TRUE
referencetext: "Aguiar Pinto, A C et al. Imaginary phases in two-level model with spontaneous decay. J. Phys. A: Math. Gen.2003; 36: 7461-7467.\r\n\r\nAspden H. Creation: The Physical Truth, Book Guild Publishing (Brighton, England) 2006.\r\n\r\nBender, C M. Making sense of non-hermitian Hamiltonians. Rep. Prog. Phys. 2007; 70: 947-1018.\r\n\r\nCorrea PN and Correa AN. Experimental Aetheometry v1 (Akronos Pub), 2004.\r\n\r\nDirac, P A M. The quantum theory of the electron. Proc. R. Soc. 1928; A 117: 610-624.\r\n\r\nDirac, P A M. The Principles of Quantum Mechanics (4th edition) 1983; (Clarendon Press, Oxford, p. 265)\r\n\r\nFeng, el al. Theoretical expectations for the muon's electric dipole moment.Nucl.Phys.2001; B613: 366-381.\r\n\r\nGauthier R. The Dirac equation and the superluminal electron model. 2006; http://superluminalquantum.org\r\n\r\nGraesser, M. & Thomas, S. Supersymmetric relations among electromagnetic dipole operators. Phys. Rev. 2002; D65: 075012.\r\n\r\nGraham D. Experimental data demonstrating augmentation of ambient gravitational and geomagnetic fields. STAIF 2006.\r\n\r\nGraneau P & Graneau PN. First indication of Ampere tension in solid electric conductors. Phys Lett 1983; 97A: 253.\r\n\r\nHestenes D. Spacetime physics with geometric algebra. Am. J. Phys. 2003; 71 (6): 691-714.\r\n\r\nHestenes D. Zitterbewegung in Quantum Mechanics -- a research program. arXiv 2008a; [quant-ph] 0802.2728.\r\n\r\nHestenes D. Reading the Electron Clock. arXiv 2008a; [quant-ph] 0802.3227.\r\n\r\nHu H and Wu M. Spin-mediated consciousness theory. arXiv 2002; quant-ph/0208068. Also see Med. Hypotheses 2004a: 63: 633-646.\r\n\r\nHu H and Wu M. Spin as primordial self-referential process driving quantum mechanics, spacetime dynamics and consciousness. NeuroQuantology 2004b; 2:41-49. Also see Cogprints: ID2827 2003.\r\n\r\nHu H and Wu, M. Action potential modulation of neural spin networks suggests possible role of spin in memory and consciousness. NeuroQuantology 2004c; 2:309-316. Also see \r\nCogprints: ID3458 2004d.\r\n\r\nHu H and Wu, M. Thinking outside the box: the essence and implications of quantum entanglement. NeuroQuantology 2006a; 4: 5-16.\r\n\r\nHu H and Wu M. Photon induced non-local effect of general anesthetics on the brain. NeuroQuantology 2006b; 4:17-31. Also see Progress in Physics 2006c; v3: 20-26.\r\n\r\nHu H and Wu M. Evidence of non-local physical, chemical and biological effects support quantum brain. NeuroQuantology 2006d; 4: 291-306. Also see Progress in Physics 2007a; v2: 17-24.\r\n\r\nHu H & Wu M. Thinking outside the box II: the origin, implications and applications of gravity and its role in consciousness. NeuroQuantology 2007b; 5:190-196.\r\n\r\nHu H & Wu M. How mind influences brain through proactive spin. NeuroQuantology 2007c; 5: 205-213.\r\n\r\nJahn R G and Dunne B J. The PEAR proposition. J Sci Exploration 2005;19: 195–245.\r\n\r\nKozyrev N A. Sources of Stellar Energy and the Theory of the Internal Constitution of Stars. Progress in Physics 2005; v3: 61-99.\r\n\r\nNowack, et al. Coherent control of a single electron spin with electric fields. Science Express 2007; DOI: 10.1126/science.1148092.\r\n\r\nRadin D. Entangled mind: extrasensory experiences in a quantum reality. Paraview Pocket Books 2006.\r\n\r\nRauscher, E A & Targ, R. The speed of thought: Investigation of a complex space-time metric to describe psychic phenomena. J. Sci. Explor. 2001; 15: 331-354.\r\n\r\nRivas M. Kinematical formalism of elementary spinning particles. arXiv 2005; physics/0509131.\r\n\r\nRosser, W G V. An introduction to the theory of relativity, P326. London Butterworths, Press 1964.\r\n\r\nShen, S Q. Spin transverse force on spin current in an electric field. Phys. Rev. Lett. 2005; 95: 187203.\r\n\r\nSilenko, A J. Quantum-mechanical description of the electromagnetic interaction of relativistic particles with electric and magnetic dipole moments. Russ.Phys.J. 2005; 48: 788-792.\r\n\r\nSolomon, D. Some new results concerning the vacuum in Dirac Hole Theory. arXiv 2006; quant-ph/0607037.\r\n\r\nSolomon, D. Quantum states with less energy than the vacuum in Dirac Hole Theory. arXiv 2007; quant-ph/0702271.\r\n\r\nSun, Q F et al. Spin-current-induced electric field. Phys. Rev. B 2004; 69: 054409.\r\n\r\nTiller W. Psychoenergetic science: a second Copernican-scale revolution. Accessed 2007, May. http://www.tiller.org "
relation_type: []
relation_uri: []
reportno: ~
rev_number: 24
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status_changed: 2008-03-10 14:55:50
subjects:
- bio-phys
succeeds: ~
suggestions: ~
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title: 'Concerning Spin as Mind-pixel: How Mind Interacts with the Brain through Electric Spin Effects'
type: journalp
userid: 3604
volume: 6