Hu, Huping and Wu, Maoxin (2010) Experimental Support of Spin-mediated Consciousness Theory from Various Sources. Journal of Consciousness Exploration & Research, 1 (8). pp. 907-936. ISSN 2153-8212
Preview |
PDF
- Published Version
927kB |
Official URL: http://jcer.com/index.php/jcj/article/view/110
Abstract
This paper summarizes experimental support to spin-mediated consciousness theory from various sources including the results of our own. In doing so, we also provide explanations based on this theory to experimental phenomena such as out-of-body experience and sensed presence, quantum-like cognitive functions and optical illusions. Whether one agrees or not with the spin-mediated consciousness theory is for one alone to judge. In any event, the importance of the experimental results mentioned in this paper is obvious: quantum effects play important roles in brain/cognitive functions despite of the denials and suspicions of the naysayer and skeptics.
Item Type: | Article |
---|---|
Subjects: | Q Science > Q0 Interdisciplinary sciences > Q01 Interdisciplinary sciences (General) |
References: | Achterberg, J. et. al., Evidence for correlations between distant intentionality and brain function in recipients: A functional magnetic resonance imaging analysis. J. Altertaive & Complimentary Med., 2005; 11 (6): 965–971.
Aerts, D. et. al. The violation of bell inequalities in the macroworld. Foundations of Physics, 2000; 30(9): 1387-1414. Bierman, J. B. Does consciousness collapse the wave-packet? Mind & Matter, 2003; 1(1): 45-77 Bokkon, I. Dreams and neuroholography: an interdisciplinary interpretation of development of homeotherm state in evolution. Sleep and Hypnosis, 2005; 7: 61-76. Chanelière,T et al. Storage and retrieval of single photons transmitted between remote quantum memorie. Nature 2005: 438: 833-836. Davenas E, Beauvais F, Amara J, et al. Human basophil degranulation triggered by very dilute antiserum against IgE, Nature, 1988; 333 (6176): 816–8. Dirac, PAM. The quantum theory of the electron. Proc. R. Soc. 1928; A117: 610-624. Conte, E. et. al. A preliminary evidence of quantum like behavior in measurements of mental states. 2003; arXiv:quant-ph/0307201v1. Conte, E. et. al. Mental states follow quantum mechanics during perception and cognition of ambiguous figures. Open Systems and Information Dynamics, 2009; 16(1): 85-100. Conte, E. et. al. A Preliminary Experimental Verification of Violation of Bell Enequality in a Quantum Model of Jung Theory of Personality. JCER, 2010: 1(7): 831-849. Emoto, M., The Hidden Messages in Water, 2005, Atria. Feng, el al. Theoretical expectations for the muon's electric dipole moment.Nucl.Phys.2001; B613: 366-381. Gariaev, P.P., et. al., Holographic Associative Memory of Biological Systems, Proceedings SPIE, Optical Memory and Neural Networks, 199; 1621: 280- 291. Gauthier R. The Dirac equation and the superluminal electron model. 2006; http://superluminalquantum.org Geller, U. et al., Mind Medicine: The Secret Of Powerful Healing, 1999, Element Books Ltd. Germine, M. Experimental Model for Collapse of the Wavefunction. Dynamical Psychology, 1998: http://www.goertzel.org/dynapsyc/1998/collapse.html Gershenfeld, N, Chuang, IL. Bulk spin resonance quantum computation. Science 1997; 275: 350–356. Ghosh, S, Rosenbaum, TF, Aeppli, G, Coppersmith, SN. Entangled quantum state of magnetic dipoles. Nature: 2003; 425: 48-51. Graesser, M. & Thomas, S. Supersymmetric relations among electromagnetic dipole operators. Phys. Rev. 2002; D65: 075012. Grinberg-Zylberbaum, J. & Ramos, J., Patterns of interhemispheric correlation during human communication. International Journal of Neuroscience, 1987; 36: 41–53. Hestenes, D. Quantum mechanics from self-interaction. Found. Phys. 1983; 15: 63–78. Hestenes D. Spacetime physics with geometric algebra. Am. J. Phys. 2003; 71 (6): 691-714. Hestenes D. Zitterbewegung in Quantum Mechanics -- a research program. arXiv 2008a; [quant-ph] 0802.2728. Hestenes D. Reading the Electron Clock. arXiv 2008a; [quant-ph] 0802.3227. Hu, H. & Wu, M. Mechanism of anesthetic action: oxygen pathway perturbation hypothesis. Med. Hypotheses 2001a: 57: 619-627. Also see arXiv 2001b; physics/0101083. Hu, H. & Wu, M. Spin-mediated consciousness theory. arXiv 2002; quant-ph/0208068. Also see Med. Hypotheses 2004a: 63: 633-646. Hu, H. & 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. Hu, H. & 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 Cogprints: ID3458 2004d. Hu, H. & Wu, M. Thinking outside the box: the essence and implications of quantum entanglement. NeuroQuantology 2006a; 4: 5-16. Hu, H. & 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. Hu, H. & Wu, M. Evidence of non-local physical, chemical and biological effects supports quantum brain. NeuroQuantology 2006d; 4: 291-306. Also see Progress in Physics 2007a; v2: 17-24. Hu, 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. Hu, H. & Wu, M. On dark chemistry: what’s dark matter and how mind influences brain through proactive spin. NeuroQuantology 2007c; 5: 205-213. Hu, H. & Wu, M. Concerning spin as mind-pixel: how mind interacts with the brain through electric spin effects. NeuroQuantology 2008a; 6: 26-31. Hu, H. The state of science, religion and consciousness. NeuroQuantology 2008b; 6: 323-332. Hu, H. Quantum enigma - physics encounters consciousness (book review). Psyche 2009; 15: 1-4. Hu, H. & Wu, M. The principle of existence: Toward a scientific theory of everything. viXra.org, 2009: http://vixra.org/abs/0912.0047; JCER, 2010; 1(1): 50-119. Jahn, R. G., Dunne, B. J., Margins of Reality: The Role of Consciousness in the Physical World, 2009, ICRL Press. Julsgaard, B, Kozhekin, A, Polzik, ES. Experimentally long-lived entanglement of two macroscopic objects. Nature 2001; 413: 400–403. Julsgaard, B, Sherson, J, Cirac, JI, Fiurasek, J, Polzik, ES. Experimental demonstration of quantum memory for light. Nature 2004; 432: 482–485. Khitrin, AK, Ermakov, VL, Fung, BM. Information storage using a cluster of dipolar-coupled spins. Chem. Phys. Lett. 2002; 360: 161–166. Manousakis, E. Quantum formalism to describe binocular rivalry, 2007: arXiv:0709.4516v2 [q-bio.NC]; also see Biosystems, 2009; 98: 57-66. Matsukevich, DN & Kuzmich, A. Quantum state transfer between matter and light. Science 2004; 306: 663–666. Mulligan, B.P., Hunter, M.D. & Persinger, M.A. Effects of geomagnetic activity and atmospheric power variations on quantitative measures of brain activity: replication of the Azerbaijani studies. Advances in Space Research, 2010; 45: 940-948. Nowack, et al. Coherent control of a single electron spin with electric fields. Science Express 2007; DOI: 10.1126/science.1148092. Persinger, M. A., Vectorial cerebral hemisphericity as differential sources for the sensed presence, mystical experiences and religious conversions. Psychological Reports, 1993; 76: 915-930. Persinger, M.A., Koren, S.A. & Tsang, E.W. Enhanced power within a specific band of theta activity in one person while another receives circumcerebral pulsed magnetic fields: a mechanism for cognitive influence at a distance? Perceptual and Motor Skills, 2003; 97: 877-894. Persinger, M. A. et.al. The Electromagnetic Induction of Mystical and Altered States within the Laboratory, JCER, 2010a; 1(7): 808-830. Persinger, M. A. & Lavallee , C. F., The Electromagnetic Induction of Mystical and Altered States within the Laboratory, JCER, 2010b; 1(7): 785-807. Radin, D., Entangled Minds: Extrasensory Experiences in a Quantum Reality, 2006, Paraview Pocket Books. Rauscher, 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. Reid, B. L. On the nature of growth and new growth based on experiments designed to reveal a structure and function for laboratory space. Medical Hypotheses, 1989; 29: 105-127. Rivas M. Kinematical formalism of elementary spinning particles. arXiv 2005; physics/0509131. Rosser, W G V. An introduction to the theory of relativity, P326. London Butterworths, Press 1964. Shen, S Q. Spin transverse force on spin current in an electric field. Phys. Rev. Lett. 2005; 95: 187203. Silenko, 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. Salesi, G, Recami, E. Hydrodynamics of spinning particles. Phys. Rev.1998; A57: 98–105. Sheldrake, R., Morphic Resonance: The Nature of Formative Causation, 2009, Park Street Press. Sun, Q F et al. Spin-current-induced electric field. Phys. Rev. B 2004; 69: 054409. Tiller, W. A., Psychoenergetic Science, 2007, Pavior. Wackermann, J., Dyadic correlations between brain functional states: present facts and future perspectives. Mind and Matter, 2004; 2(1): 105–122. |
ID Code: | 151 |
Deposited By: | Huping Hu |
Deposited On: | 11 Nov 2010 09:05 |
Last Modified: | 06 Feb 2021 14:41 |
Repository Staff Only: item control page