IMPROVMENT OF TECHNIQUES OF THERMAL IMAGING SURFACE CONTROL OF BIOLOGICAL OBJECTS

Authors

  • Евгений Михайлович Прохоренко Institute of Electrophysics and Radiation Technologies of NASU, Kharkov, Ukraine Street. Gudanova, 13 g Kharkov, Ukraine, 61002, Ukraine
  • Ольга Евгеньевна Брюховецкая Institute of Electrophysics and Radiation Technologies of NASU, Kharkov, Ukraine Street. Gudanova, 13 g Kharkov, Ukraine, 61002, Ukraine
  • Вячеслав Федорович Клепиков Institute of Electrophysics and Radiation Technologies of NASU, Kharkov, Ukraine Street. Gudanova, 13 g Kharkov, Ukraine, 61002, Ukraine
  • Владимир Викторович Литвиненко Institute of Electrophysics and Radiation Technologies of NASU, Kharkov, Ukraine Street. Gudanova, 13 g Kharkov, Ukraine, 61002, Ukraine
  • Андрей Иванович Морозов National University of Civil protection Ukraine Street. Chernyshevskoho, 76 Kharkov, Ukraine, 61002, Ukraine
  • Юрий Александрович Приходько National University of Civil protection Ukraine Street. Chernyshevskoho, 76 Kharkov, Ukraine, 61002, Ukraine
  • Людмила Викторовна Аладышева Ltd. "Scientific Research Institute profylaktycheskoy Medicine" Street. Gudanova, 14 g Kharkov, Ukraine, 61002, Ukraine
  • Виктория Владимировна Бандурян Ltd. "Scientific Research Institute profylaktycheskoy Medicine" Street. Gudanova, 14 g Kharkov, Ukraine, 61002, Ukraine
  • Александр Алексеевич Захарченко National Science Center Kharkov Institute of Physics and Technology (NSC KIPT), Kharkov, Ukraine Street. Akademycheskaya, 1, Kharkov, Ukraine, 61108, Ukraine

DOI:

https://doi.org/10.15587/1729-4061.2012.4568

Keywords:

infrared radiometry, thermogram, thermoanomalies, surface of the human body.

Abstract

The article suggests the technique of diagnosis of biological objects by means of infrared radiometry. The principles of thermal imaging techniques for diagnosis of thermal fields on the surface of the body were considered. A solution of the equations of heat transfer from the depth to the surface of biological objects is given. The efficiency of the thermal imaging examinations at rapid control was shown. The main factors, influencing the distortion of the results were studied. A technique for damages calculation was worked out. The basic algorithms for computer processing of the results were singled out. There is an examination of problems of layings, false termoanomalies, thermal spots, which appear at the transcript of obtained thermograms. In the course of the examination, the effects of preliminary loading on the results were studied. A theoretical model of the influence of off-site sources of infrared radiation on the test results was suggested. This model was tested and tried-out in practice. The disorders in the life activity of studied objects were discovered. The various diseases were revealed by the method of infrared radiometry. Main examples of typical thermoimages, corresponding to real disorders, as well as false layings, were given. These data were used to create the databases of thermograms of various diseases. The research is a subject of concern for practical usage at the thermal control of the human body.

Supporting Agencies

  • infrared radiometry
  • thermogram
  • thermoanomalies
  • surface of the human body.

Author Biographies

Евгений Михайлович Прохоренко, Institute of Electrophysics and Radiation Technologies of NASU, Kharkov, Ukraine Street. Gudanova, 13 g Kharkov, Ukraine, 61002

Candidate physical of mathematical sciences, Senior scientist

Ольга Евгеньевна Брюховецкая, Institute of Electrophysics and Radiation Technologies of NASU, Kharkov, Ukraine Street. Gudanova, 13 g Kharkov, Ukraine, 61002

Engineer

Вячеслав Федорович Клепиков, Institute of Electrophysics and Radiation Technologies of NASU, Kharkov, Ukraine Street. Gudanova, 13 g Kharkov, Ukraine, 61002

Doctor of physical and of mathematical sciences, professor, member of the National Academy of Sciences of Ukraine korrespodent, director.

Владимир Викторович Литвиненко, Institute of Electrophysics and Radiation Technologies of NASU, Kharkov, Ukraine Street. Gudanova, 13 g Kharkov, Ukraine, 61002

Doctor of Technical Sciences, Senior scientist, deputy director

Андрей Иванович Морозов, National University of Civil protection Ukraine Street. Chernyshevskoho, 76 Kharkov, Ukraine, 61002

Candidate of Technical Sciences, Associate Professor

Юрий Александрович Приходько, National University of Civil protection Ukraine Street. Chernyshevskoho, 76 Kharkov, Ukraine, 61002

Candidate of psychological sciences, chief medical sanytarnoy part

Людмила Викторовна Аладышева, Ltd. "Scientific Research Institute profylaktycheskoy Medicine" Street. Gudanova, 14 g Kharkov, Ukraine, 61002

Doctor of medical sciences, director

Виктория Владимировна Бандурян, Ltd. "Scientific Research Institute profylaktycheskoy Medicine" Street. Gudanova, 14 g Kharkov, Ukraine, 61002

Engineer

Александр Алексеевич Захарченко, National Science Center Kharkov Institute of Physics and Technology (NSC KIPT), Kharkov, Ukraine Street. Akademycheskaya, 1, Kharkov, Ukraine, 61108

Candidate physical of mathematical sciences, Senior scientist

References

  1. Прохоренко, Е. М. Тепловизионная диагностика для контроля противотеплового оборудования [Текст] / Е. М. Прохоренко, В. Ф. Клепиков, В. В. Колесникова, В. В. Литвиненко, А. И. Морозов. // Восточно Европейский журнал передовых технологий. – 2011. – T. 2, N 6(50). – С.65-68.
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  3. Diakides, N. A. Infrared imaging in Medicine [Текст] / N. A Diakides, J. D. Bronzino J. – CRC Press, 2007. – 448 p.
  4. Розенфельд, Л. Г. Дистанционная инфракрасная термография как современный неинвазивный метод диагностики заболеваний [Текст] / Л. Г. Розенфельд, А. В. Самохин, Е. Ф. Венгер и др. // Укр. мед. часопис. – 2008. – № 6 (68) – С. 92–97.
  5. Minkina, W. Infrared Thermography - Errors and Uncertainties [Текст] / W. Minkina, S. Dudzik. – John Wiley & Sons, 2009. – 200 p.

Published

2012-10-09

How to Cite

Прохоренко, Е. М., Брюховецкая, О. Е., Клепиков, В. Ф., Литвиненко, В. В., Морозов, А. И., Приходько, Ю. А., Аладышева, Л. В., Бандурян, В. В., & Захарченко, А. А. (2012). IMPROVMENT OF TECHNIQUES OF THERMAL IMAGING SURFACE CONTROL OF BIOLOGICAL OBJECTS. Eastern-European Journal of Enterprise Technologies, 5(5(59), 22–27. https://doi.org/10.15587/1729-4061.2012.4568

Issue

Section

Applied physics