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ELECTROPHOTONIC ANALYSIS OF COMPLEX PARAMETERS OF THE ENVIRONMENT AND PSYCHO-EMOTIONAL STATE OF A PERSON

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  • St Petersburg Universities
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... It was scientifically substantiated that the physical mechanism of this method is the emission of biophotons, enhanced by an electromagnetic field/gas discharge with the visualization of this biological radiation due to digital video recording and computer data processing. Therefore, new names of the methods "electrophotonic imaging technology" and "analysis of electrophoton emission" began to be used in the scientific literature (AEPE) [49,68,70,72,[112][113][114][115][116][117][118][119]. The operating principle of device for AEPE is illustrated in Fig. 11. ...
... The essence of the AEPE visualization process is digital video registration of the optical phenomenon of biophoton emission, which arises from a biological Fig. 11. The operating principle of device for AEPE/GRVcamera: object of study (1); transparent electrode (2); gas discharge (3); optical radiation (4); generator (5); optical system (6); video converter (7,8); computer (9); instrument case [118] (10) object (for example, a section of the skin of a human finger) due to the occurrence of a gas discharge when exposed to an electromagnetic field. When performing an AEPE study, the object of study (for example, a section of the skin of a human finger) is placed on a dielectric plate, on the reverse side of which, a transparent conductive coating is applied. ...
... The biophoton emission images are stored as AVI files by a memory unit associated with a computer processing processor. The processing processor is a specialized software package that allows one to calculate a set of parameters and, based on them, make certain diagnostic conclusions about the features of an AEPE image or a series of AEPE images [118,119]. Devices of different authors and manufacturers may differ in design, materials used, have different technical parameters. Availability of technical certification and corresponding software and hardware systems for the automated processing and analysis of video images of the biophoton emission is an important component in the UPE registration methodology for modern devices. ...
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The review describes the rationale for the feasibility of assessing the biophoton emissions in chemical and biotechnological research and existing methods. In Part 1, we will present the analysis of Meta-Epistemology methods for assessing the biophoton emission. The following stages in the history of the development of methods are identified: First discoveries and formulation of the problem. Pre-paradigm phase. Pre-technical stage (80s of the 18th century – 30s of the 20th century); – Pre-paradigm phase. Technical stage (30s–60s of the XX century); Paradigm scientific phase. The stage of accumulation of scientific data (the 60s–00s of the XX century) is the paradigm scientific phase. Stage of digital technologies and systematic scientific analysis (XXI century). Part 2 will describe the technological features of the methodology and parameters for assessing biophotons, which will allow the use of biophoton emissions in experiments in biotechnological research.
... This issue is directly related to extremely specific aspects of health protection. Indeed, it is now recognized that the occurrence of many diseases is associated with psychosomatic factors, i.e. those that, among other things, are directly dependent on various stress factors due to the impact of the environment on the psychological state of the individual, etc. [10,11]. For example, some arguments force even obesity to be included in this category [12]. ...
... Through the seal (7) and outlet (8), the cartridge (3) is connected to the tank (9), which is filled with powdered hydrogel (10). ...
... The system is controlled by transmitting data from a smartphone (10), which almost eliminates the need to use any moving parts: buttons, toggle switches, etc., in the construction itself. Due to this, it can be manufactured in a cheap monolithic case. ...
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A new approach to the production of commercial products used in aromatherapy and household aromatizing agents based on induction heating of plant raw materials and the use of hydrophilic polymer hydrogels is proposed. It is shown that obtaining highly purified essential oils is neither technologically nor economically justified from the point of view of their use in aromatherapy. The proposed approach makes it possible to obtain products for aromatherapy with minimal processing of raw materials and low production costs. The main end product is a polymer hydrogel saturated with a liquid phase formed during induction heating of a mixture of a plant component with metal inclusions. Such a product, among other things, allows the implementation of electronic aromatherapy systems and household aromatizing agents, in which the generation of aroma oils is also provided by induction heating. In the operation of such systems, the basic property of thermosensitive hydrogels is used – a shift in the hydrophobic-hydrophilic balance with temperature variations, which makes it possible to exclude parasitic evaporation of volatile components. Specific technical solutions that implement this approach are proposed.
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... Electromagnetic field, generated on the surface of the electrode stimulate emission of electrons and photons from the metal, which generate sliding gas discharge. 16,17 The glow of the discharge 7 is transformed by optoelectronic system 6 in a series of images analyzed in a computer. The experimental system can be represented as an equivalent circuit of the connected LC circuits ( Figure 2). ...
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Biometrics is the recognition process based on one or more intrinsic anatomical, physiological and psychological characteristics. Recently, computational bio-electrography based on gas discharge visualization (GDV) technique has been proposed as one of the biometrics tools for investigating physiological and psycho-emotional functional states of an individual. In this paper, we present an application of computational biometrics based GDV for visual and quantitative evaluation of anxiety in the process of learning English as a Second Language (ESL). The integration of biometrics in the education paradigm has been investigated in a pilot study involving foreign students enrolled in the ESL course at the ESL Institute, Jackson State University. We measured the electro-photonic emission (also called GDV-grams) of students' fingertips before and after language activities, specifically listening comprehension tasks and showed that the anxiety index in listening comprehension paradigm corresponds to the increase of entropy level of left hand corresponding to the right hemisphere. Our pilot data confirms the recent findings of correlation of right hemisphere involvement in second language acquisition at the level of language proficiency. Thus, computational biometrics based GDV tool may be used to evaluate and potentially identify anxiety present in ESL learners.
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