GDVCAMERA has been developed by Dr. Konstantin Korotkov, Alexander Laptev, Dr. Alexander Kuznetsov and Olga Belobaba in 1995 and brings the powerful technology known as Gas Discharge Visualization technique to market in a more accessible way than ever before. The product consists of a desktop camera and accompanying software, which allows a user to quickly and easily conduct human energy scans. Accessory attachments are also available for purchase to conduct environment and object scans.
GDVCAMERAS – 1999-2012
GDV Technique is the computer registration and analysis of electro-photonic emissions of biological objects (specifically the human fingers) resulting from placing the object in the high-intensity electromagnetic field on the device lens.
When a scan is conducted, a weak electrical current is applied to the fingertips for less than a millisecond. The object’s response to this stimulus is the formation of a variation of an “electron cloud” composed of light energy photons. The electronic “glow” of this discharge, which is invisible to the human eye, is captured by the camera system and then translated and transmitted back in graphical representations to show energy, stress and vitality evaluations.
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ABOUT Dr. Konstantin Korotkov
Dr. Konstantin Korotkov is a Professor of Physics at St. Petersburg State Technical University in Russia. He is a leading scientist internationally renowned for his pioneering research on the human energy field. Professor Korotkov developed the Gas Discharge Visualization technique, based on the Kirlian effect.
The HEF consists of different levels of vibrations or frequencies, and something called chakras. Chakra is a Sanskrit word meaning wheel of light. Chakras act like energy transformers, either stepping up the energy in frequency or stepping it down. Chakra System. Meridians and channels.
GDV Analysis of Electrophotonic Glow of Liquids
Kirlian Photography process is simple. Sheet film is placed on top of a metal plate, called the discharge or film plate. The object to photograph is placed on top of the film. High voltage is applied to the plate momentarily to make an exposure. The corona discharge between the object and discharge plate passes through and is recorded onto the film. When the film is developed you have a Kirlian photograph of the object.
Kirlian and Kirlian Photography
Kirlian and Kirlian Photography
Kirlian and Kirlian Photography
Concentration dependence, Concentration dependence of gas, Concentration dependence of gas discharge around drops, Korotkin, Korotkov, Water, Water memory, Water Science Edit
Concentration dependence of gas discharge around drops of inorganic electrolyte Korotkov, Korotkin, JAPPF JOURNAL OF APPLIED PHYSICS VOLUME 89, NUMBER 9 1 MAY 2001 Concentration dependence of gas discharge around drops of inorganic electrolytes K. G. Korotkov Institute of Fine Mechanics and Optics, Sablinskaya 14, St. Petersburg 190000, Russia D. A. Korotkin Department of Mathematics […]
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