{"title":"POSSIBILITIES OF ELECTRO-PHOTONIC EMISSION ANALYSIS IN THE REPRESENTATION OF SYSTEM INFORMATION ENERGY PROCESSES OF THE HUMAN ORGANISM","authors":"G. Nevoit","doi":"10.31718/mep.2020.24.5-6.05","DOIUrl":null,"url":null,"abstract":"The article presents the results of determining the clinical and diagnostic potential of using the electro-рhotonic emission analysis from human fingers during an objective structured clinical examination. The aim of the study is to assess the clinical and diagnostic capabilities of electro-рhotonic emission analysis in the reflection of systemic information energy processes of the human body to increase the effectiveness of measures to prevent and treat NCDs by improving their diagnosis and prevention through the introduction of modern science-intensive technologies and scientific magnetoelectrochemical concept of metabolism. The results of the оpen, non-randomized, controlled study of 56 functional respondents who do not systematically engage in sports are presented. The electro-рhotonic emission analysis was performed on a certified measuring device Bio-Well GDV Camera 2.0 (Bio-Well, Russia-USA). Different levels of functional status and different degrees of health were established as a result of the study. The method of electrophoton emission analysis allows us to calculate the parameters of the state of metabolism of substances at the tissue level and indirectly assess the general functional state of patients based on data processing regarding the intensity and nature of localization of photon emission from the fingers of the respondent. The method for the electro-рhotonic emission analysis is recommended by the authors for possible use in clinical medicine in order to objectively assess the energy status of the patient.","PeriodicalId":32911,"journal":{"name":"Problemi ekologiyi ta meditsini","volume":" ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2020-12-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Problemi ekologiyi ta meditsini","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.31718/mep.2020.24.5-6.05","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 1
Abstract
The article presents the results of determining the clinical and diagnostic potential of using the electro-рhotonic emission analysis from human fingers during an objective structured clinical examination. The aim of the study is to assess the clinical and diagnostic capabilities of electro-рhotonic emission analysis in the reflection of systemic information energy processes of the human body to increase the effectiveness of measures to prevent and treat NCDs by improving their diagnosis and prevention through the introduction of modern science-intensive technologies and scientific magnetoelectrochemical concept of metabolism. The results of the оpen, non-randomized, controlled study of 56 functional respondents who do not systematically engage in sports are presented. The electro-рhotonic emission analysis was performed on a certified measuring device Bio-Well GDV Camera 2.0 (Bio-Well, Russia-USA). Different levels of functional status and different degrees of health were established as a result of the study. The method of electrophoton emission analysis allows us to calculate the parameters of the state of metabolism of substances at the tissue level and indirectly assess the general functional state of patients based on data processing regarding the intensity and nature of localization of photon emission from the fingers of the respondent. The method for the electro-рhotonic emission analysis is recommended by the authors for possible use in clinical medicine in order to objectively assess the energy status of the patient.
本文介绍了在客观结构化的临床检查中使用人类手指的电子-光子发射分析来确定临床和诊断潜力的结果。本研究的目的是评估电子发射分析在反映人体系统信息能量过程中的临床和诊断能力,通过引入现代科学密集型技术和科学代谢的磁电化学概念。本文介绍了对56名没有系统参与体育运动的功能性受访者进行的非随机对照研究的结果。在经过认证的测量设备Bio-Well GDV Camera 2.0(Bio-Well,俄罗斯-美国)上进行电子-光子发射分析。研究结果确定了不同水平的功能状态和不同程度的健康状况。电子光子发射分析方法使我们能够在组织水平上计算物质代谢状态的参数,并基于与受访者手指光子发射的强度和定位性质有关的数据处理来间接评估患者的一般功能状态。作者建议在临床医学中使用电子-光子发射分析方法,以客观评估患者的能量状态。