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THERMAL IMAGING CAMERA AS A DIAGNOSTIC INSTRUMENT, WHICH PROVIDES SELF-CONTROL MAMMARY GLANDS IN THE DOMESTIC ENVIRONME

https://doi.org/10.24060/2076-3093-2017-7-2-28-33

Abstract

The most effective method of early diagnosis of tumors of mammary glands is selfcontrol. To develop practical recommendations for self-monitoring of the breast in everyday life the study included the analysis of scientific and patent literature, original technical solutions, with an assessment of their strengths and weaknesses. It is shown that for selfcontrol of the breast in everyday life the most suitable way is to monitor the color range of the infrared image of the breast using a thermal imager during and after air blowing air with a hair dryer in a room temperature. Principle of the method is based on the fact that tumors violate uniformity of structure of tissues, their thermal conductivity and/or heat. For examples the study reviewed clinical cases of self-control of the mammary glands in patients with breast tumor and without cancer. Identified steadiness of change in local temperature and color images of breast tissue allows to confirm the absence of lesions and the presence of a zone of unevenness and asymmetry of the local temperature and color images to diagnose a modified thermal conductivity or heat tissue glands and assume the presence of neoplasm in its projection. Thus, for domestic self-control of mammary glands it is advised to monitor the colour range of infrared thermal images on the screen during and after air blowing. When it is assumed that monocolor gland is indicative of the homogeneity of its structure, and multi-colored image of the gland suggests the presence of tumors. 

About the Authors

D. B. Nikitiuk
Federal Research Center of Food, Biotechnology and Food Safety
Russian Federation

Nikitiuk Dmitry Borisovich – Corresponding Member of Russian Academy of Sciences, Doctor of Medical Sciences, Professor 

Moscow



K. G. Gurevich
A.I. Evdokimov Moscow State University of Medicine and Dentistry
Russian Federation

Gurevich Konstantin Georgievich – Doctor of Medical Sciences, Professor, Chair of UNESCO “Healthy way of life is the key to successful development” Department 

Moscow



A. L. Urakov
Izhevsk State Medical Academy; Institute of Thermology
Russian Federation

Urakov Alexander Livievich – Doctor of Medical Sciences, Professor, Chair of the General and Clinical Pharmacology Department 

Izhevsk



N. A. Urakova
Institute of Thermology
Russian Federation

Urakova Natalia Aleksandrovna – Candidate of Medical Sciences, Director «Institute of thermology»

Izhevsk



A. A. Gadelshina
Institute of Thermology
Russian Federation

Gadelshina Albina Azatovna – Jr. Researcher 

Izhevsk



References

1. Гадельшина АА, Герасимова НН. Мониторинг тепловизорного изображения подмышечной области в норме и после кратковременного охлаждения или нагревания. Международный журнал прикладных и фундаментальных исследований. 2016;11(5):891-95. [Gadelshina A.A., Gerasimova N.N. Monitoring thermal imaging image the axillary region in norm and after a brief cooling or heating. International Journal Applied and Fundamental Research. 2016;11(5): 891-95 (in Russ.)].

2. Гадельшина АА. Инфракрасная термография в условиях температурного контрастирования молочных желез как способ повышения скорости и эффективности диагностики новообразований. Электронный научно-образовательный вестник здоровье и образование в XXI веке. 2016;18(7):1-5. [Gadelshina AA. Infrared thermography in the conditions of temperature contrasting of mammary glands as the way of rising of rate and efficiency of diagnostics of neoplasms. Electronic scientific-educational journal. Health and education in the twenty-first century. 2016;18(7):15 (in Russ.)].

3. Ураков АЛ. Инфракрасная термография и тепловая томография в медицинской диагностике: преимущества и ограничения. Электронный научно-образовательный вестник здоровье и образование в XXI веке. 2013;15(11):45-51. [Urakov AL. Infrared thermography and thermal tomography in medical diagnostics: advantages and limitations. Electronic scientific-educational journal. Health and education in the twenty-first century. 2013;15(11):4551 (in Russ.)].

4. Ураков АЛ, Гадельшина АА, Герасимова НН, Уракова ТВ. Экспресс-метод инфракрасной диагностики состояния молочных желез в бытовых условиях. Международный журнал прикладных и фундаментальных исследований. 2016;7(6):996-98. [Urakov AL, Gadelshina AA, Gerasimova NN, Urakova TV. Express-method for infrared diagnostics of lacteal glands in the domestic environment. International Journal Applied and Fundamental Research. 2016;7(6):996-98 (in Russ.)].

5. Ураков АЛ, Уракова НА, Уракова ТВ. Инфракрасный самоконтроль молочных желез. Международный журнал прикладных и фундаментальных исследований. 2016;7(2):217-20. [Urakov AL, Urakova NA, Urakova TV. Infrared self-control mammary glands. International Journal of Applied and Fundamental Research. 2016;7(2):217-20 (in Russ.)].

6. Гуревич КГ, Анищенко АП, Ураков АЛ, Архангельская АН, Уракова НА, Касаткин АА и др. Способ инфракрасной оценки устойчивости пояснично-крестцового мышечного и суставного комплекса пациента к сгибательно-разгибательной нагрузке. Патент РФ RU 2604957. 2016. [Gurevich KG, Anishchenko AP, Urakov AL, Arkhangelskaja AN, Urakova NA, Kasatkin AA et al. Method for infrared estimation of lumbosacral muscle and joint complex stability in flexion-extension movements. Russian Federation patent RU 2604957 C1. 2016 (in Russ.)].

7. Urakov AL, Kasatkin AA, Urakova NA. Сhanges the local temperature of venous blood and venous vessel walls as the basis for visualization of superficial veins in the infrared venography, using temperature-induced tissue contrast. In: Ng Eddie YK, Etehad Tavarol M, editors. Application of Infrared to Biomedical Sciences. Series in BioEngineering. Singapore: Springer Nature; 2017:429-36.

8. Ураков АЛ, Фишер ЕЛ. Температурное контрастирование тканей тела человека улучшает их инфракрасную визуализацию. Международный журнал прикладных и фундаментальных исследований. 2016;6(5):884-86. [Urakov AL, Fisher EL. Temperature contrasting of body tissue improves their infrared visualization. International Journal of Applied and Fundamental Research. 2016;6(5):884-86 (in Russ.)].

9. Ураков АЛ, Уракова НА, Никитюк ДБ, Насыров МР, Фишер ЕЛ, Чернова ЛВ. Способ инфракрасной томографии поверхности тела при судебно-медицинском освидетельствовании живых лиц. Патент РФ RU 2581718. 2016. [Urakov AL, Urakova NA, Nikitiuk DB, Nasyrov MR, Fisher EL, Chernova LV. Method of infrared tomography of the body surface for the forensic medical examination of living persons. Russian Federation patent RU 2581718 C1. 2016 (in Russ.)].

10. Ураков АЛ, Уракова ТВ, Уракова НА, Соколов АН, Чернова ЛВ, Фишер ЕЛ, Девицкая ЕВ. Способ инфракрасного скрининга новообразований молочных желез. Патент РФ RU 2561302. 2015. [Urakov AL, Urakova TV, Urakova NA, Sokolov AN, Chernova LV, Fisher EL, Devitskaya EV. Method of infrared screening for breast tumors. Russian Federation Patent RU 2561302 С1. 2015 (in Russ.)].


Review

For citations:


Nikitiuk D.B., Gurevich K.G., Urakov A.L., Urakova N.A., Gadelshina A.A. THERMAL IMAGING CAMERA AS A DIAGNOSTIC INSTRUMENT, WHICH PROVIDES SELF-CONTROL MAMMARY GLANDS IN THE DOMESTIC ENVIRONME. Creative surgery and oncology. 2017;7(2):28-33. (In Russ.) https://doi.org/10.24060/2076-3093-2017-7-2-28-33

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ISSN 2076-3093 (Print)
ISSN 2307-0501 (Online)