Background: Measurement of the evoked photon is newly introduced method for measuring life activities those amplify weak light emitted from organisms. We examined the relationship of bioenergy fluctuation state in vivo with conventional physical parameters during twelve hours of daytime arousal using evoked photon measurements. Evaluation of metabolic level, one of the bioenergy state, has demonstrated its effectiveness by evoked photon. Methods: The evoked photon, a weak light emitted from organisms, is a new parameter for measuring life activities, which was recorded using gas discharge visualization (GDV) equipment, and the area and intensity of the energy field index from the GDV image glow were correlated to biorhythmic fluctuations, as corroborated by biochemical measurements of secretory-immunoglobulin A (s-IgA) levels. Result: The area and intensity of the energy field index at the time of awakening were significantly lower (p < 0.05) than the values obtained after being awake for 12 h. Conclusions: Thus, the evoked photon reflects the bioenergy of the entire body and can be used as a general indicator of physical health.
Foster, G.M. and Anderson, B.G. (1978) Medical Anthoropology, John Wiley & Sons, Inc.
Mairan, De. (1729) Observation botanique, Histoire de l’Académie royale dessciences avec les mémoires de mathématique et de physique tirés des registres decette Académie, 35.
Richter, C.P. and Wang, G.H. (1926) New Apparatus for Measuring the Spontaneous Motility of Animals. Journal of Laboratory and Clinical Medicine, 12, 289-292.
Kleitman, N. (1939) Sleep and Wakefulness. Chicago: University of Chicago Press.
Moore, R.Y. and Eichler, V.B. (1972) Loss of a Circadian Adrenal Corticosterone Rhythm Following Suprachiasmatic Lesions in the Rat. Brain Research, 42, 201-206. https://doi.org/10.1016/0006-8993(72)90054-6
Stephan, F.K. and Zucker, I. (1972) Circadian Rhythms in Drinking Behavior and Locomotor Activity of Rats Are Eliminated by Hypothalamic Lesions. Proceedings of the National Academy of Sciences of the United States of America, 69, 1583-1586. https://doi.org/10.1073/pnas.69.6.1583
Inaba, F. and Shimizu, Y. (2011) Study on Information about Living System by Biophoton. Tohoku University Press.
Korotkov, K. (2002) Human Energy Field Study with GDV Bioelectrography. Backbone Publishing Co., Fair Lawn.
Dobson, P. and O’Keeffe, E. (2005) The Efficacy of the Gas Discharge Visualisation Technique as a Measure of Physical and Mental Health. Computer-Based Medical Systems, 455-457.
Konstantin, K. and Berney, W. (2004) Assessing Biophysical Energy Transfer Mechanisms in Living Systems: The Basis of Life Processes. Journal of Alternative and Complementary Medicine, 10, 49-57.
Cioca, G., Korotkov, K., Giacomoni, P.U., Rein, G. and Korotkova, K. (2004) Effects of Exposure to Electromagnetic Fields from Computer Monitors on the Corona Discharge from Skin. In: Korotkov, K., Ed., Measuring Energy Fields State of the Science, Backbone, Fair Lawn, 183-192.
Korotkov, K. (2002) GDV in Medicine 2002: Application of the GDV Bioelectrography Technique in Medicine. In: Francomano, C.A., Jonas, W.B. and Chez, R.A., Eds., Proceedings: Measuring the Human Energy Field: State of the Science, Samueli Institute, Corona del Mar, 9-22.
Korotkov, K., Donlina, M.Y. and Bascom, R. (2002) Appendix: Translation of Russian Documents Related to GDV. In: Francomano, C.A. and Jonas, W.B., Eds., Proceedings: Measuring the Human Energy Field: State of the Science, Samueli Institute, Corona del Mar, 90-156.
Rizzo-Roberts, N. (2004) GDV Description and Discussion of Safety Issues. In: Korotkov, K., Ed., Measuring Energy Fields: State-of-The-Science, Backbone, Fair Lawn, 23-28.
Augner, C. and Hacker, G.W., Schwarzenbacher, S. and Pauser, G. (2010) Gas Discharge Visualization (GDV). Eine auf physikalischen Methoden und Meridiananalysen basierende Technik zur Untersuchung von Stressreaktionen und energetischen Schwachstellen—Zwischenbericht laufender Forschung. (Gas Discharge Visualization (GDV): A Technique Based on Physical Methods and Meridian Analyses to Detect Stress Reactions and Energetic Weaknesses—Report of Ongoing Research). Deutsche Zeitschrift für Akupunktur, 53, 14-20.
Hacker, G.W., Chr, A. and Pauser, G. (2011) Daytime-Related Rhythmicity of Gas Discharge Visualization (GDV) Parameter Glow Image Area: Time Course and Comparison to Biochemical Parameters Measured in Saliva. In: Buchkapitel, A.E.D. and Korotkov, K., Energy Fields Electrophotonic Analysis in Humans and Naturepp, University Press, Petersburg St., 80-83.
Dobson, P. and O’Keefe, E. (2000) Investigations into Stress and Its Management Using the Gas Discharge Visualization Technique. Journal of Alternative and Complementary Medicine, 12-17.
Bascom, R., Buyantseva, L., Zhegmin, Q., Dolina, M. and Korotkov, K. (2002) Gas Discharge Visualization (GDV)-Bioelectrography. In: Francomano, C.A., Jonas, W.B. and Chez, R.A., Eds., Proceedings: Measuring the Human Energy Field: State of the Science, Samueli Institute, Corona del Mar, 55-66.
Francomano, C.A., Jonas, W.B. and Chez, R.A. (2002) Measuring the Human Energy Field: State of the Science. Samueli Institute, Corona del Mar.
Rizzo-Roberts, N. (2002) Gaseous Discharge Visualization (GDV) Bioelectrography: An Overview. In: Francomano, C.A., Jonas, W.B. and Chez, R.A., Eds., Proceedings: Measuring the Human Energy Field: State of the Science, Samueli Institute, Corona del Mar, 23-30.
Pehek, J.O., Kyler, H.J. and Faust, D.L. (1976) Image Modulation in Corona Discharge Photography. Science, 194, 263-270. https://doi.org/10.1126/science.968480
Giacomoni, P., Hayes, M., Korotkov, K., Krinzhanovsky, E., Matravers, P., Momoh, K.S., et al. (2003) Study of Cultural Aspects of Cosmetology Using the Dynamic Gas Discharge Visualisation Technique. In: Proceedings of the International Congress “Science, Information, Spirit”, St. Petersburg, 95.
Vainshelboim, A., Hayes, M., Momoh, K.S. and Konstantin, K. (2004) Observing the Behavioral Response of Human Hair to a Specific External Stimulus Using Dynamic Gas Discharge Visualisation. Journal of Cosmetic Science, 55, S91-S104.
Tokyo Metropolitan University (1989) Physical Education Laboratory: Japanese Physical Fitness Standard Value. 4th Edition, Humaido Co., Tokyo.
Akimoto, T., Akama, T., Koda, Y., Waku, T., Hayashi, E., Tatsuno, M., Sugiura, K., Amano, K. and Kono, I. (1998) Effects of Repetitious Intense Exercise Training on Resting Salivary IGA. JPFSM, 47, 245-251.
McKechnie, A.A., Wilson, F., Watson, N. and Scott, D. (1988) Anxiety States: A Preliminary Report on the Value of Connective Tissue Massage. Japanese Psychological Research, 27, 125-129.
Nakata, Y., Iijima, S., Maruyama, S., et al. (2000) Levels of Salivary Secretory Immunoglobulin A as a Workload Indicator. Japan Air Self-Defense Force Aeromedical Laboratory Reports, 40, 27-35.
Sakai, K., Yamada, H., Takasu, H., Nakajima, I. and Akasaka, M. (1986) The Study on the Secretory IgA of Human Saliva by the Enzyme Immunoassay. The Japanese Journal of Pediatric Dentistry, 24, 483-484.
Tsubouchi, S., Shirafuji, I., Hamaguchi, M., Matsuura, Y. and Shimizu, N. (1985) Calculating the Energy Expenditure from HR-VO2 Method. Osaka Research. Journal of Physical Education, 23, 41-45.
Tsubouchi, S., Makoro, S., Hamaguchi, M., Matsuura, Y. and Shimizu, N. (1986) A Study on Estimation of Energy Consumption per Day through Heart Rate. Osaka Research. Journal of Physical Education, 24, 30-33.
Izawa, S., Shirotsuki, K., Sugaya, N., Ogawa, N., Suzuki, K. and Nomura, S. (2007) The Application of Saliva to an Assessment of Stress: Procedures for Collecting and Analyzing Saliva and Characteristics of Salivary Substances. Japanese Journal of Complementary and Alternative Medicine, 4, 91-101. https://doi.org/10.1625/jcam.4.91
Rohleder, N., Nater, U.M., Wolf, J.M., Ehlert, U. and Kirschbaum, C. (2004) Psychosocial Stress-Induced Activation of Salivary Alpha-Amylase. An Indicator of Sympathetic Activity. Annals of the New York Academy of Sciences, 1032, 258-263. https://doi.org/10.1196/annals.1314.033
Rantonen, P.J.F. and Meurman, J.H. (2000) Correlations between Total Protein, Lysozyme, Immunoglobulins, Amylase, and Albumin in Stimulated Whole Saliva during Daytime. Acta Odontologica Scandinavica, 58, 160-165. https://doi.org/10.1080/000163500429154
Deinzer, R., Kleineidam, C., Stiller-Winkler, R., Idel, H. and Bachg, D. (2000) Prolonged Reduction of Salivary Immunoglobulin a (sIgA) after a Major Academic Exam. International Journal of Psychophysiology, 37, 219-232. https://doi.org/10.1016/S0167-8760(99)00112-9
Hucklebridge, F., Clow, A. and Evans, P. (1998) The Relationship between Salivary Secretory Immunoglobulin A and Cortisol: Neuroendocrine Response to Awakening and the Diurnal Cycle. International Journal of Psychophysiology, 31, 69-76. https://doi.org/10.1016/S0167-8760(98)00042-7